Správa o činnosti organizácie SAV
Ústav experimentálnej fyziky SAV
Správa o činnosti organizácie SAV
za rok 2014
Košice
január 2015
Obsah osnovy Správy o činnosti organizácie SAV za rok 2014
1. Základné údaje o organizácii
2. Vedecká činnosť
3. Doktorandské štúdium, iná pedagogická činnosť a budovanie ľudských zdrojov pre vedu a techniku
4. Medzinárodná vedecká spolupráca
5. Vedná politika
6. Spolupráca s VŠ a inými subjektmi v oblasti vedy a techniky
7. Spolupráca s aplikačnou a hospodárskou sférou
8. Aktivity pre Národnú radu SR, vládu SR, ústredné orgány štátnej správy SR a iné organizácie
9. Vedecko-organizačné a popularizačné aktivity
10. Činnosť knižnično-informačného pracoviska
11. Aktivity v orgánoch SAV
12. Hospodárenie organizácie
13. Nadácie a fondy pri organizácii SAV
14. Iné významné činnosti organizácie SAV
15. Vyznamenania, ocenenia a ceny udelené pracovníkom organizácie SAV
16. Poskytovanie informácií v súlade so zákonom o slobodnom prístupe k informáciám
17. Problémy a podnety pre činnosť SAV
PRÍLOHY
A Zoznam zamestnancov a doktorandov organizácie k 31.12.2014
B Projekty riešené v organizácii
C Publikačná činnosť organizácie
D Údaje o pedagogickej činnosti organizácie
E Medzinárodná mobilita organizácie
1. Základné údaje o organizácii
1.1. Kontaktné údaje
Názov: Ústav experimentálnej fyziky SAV
Riaditeľ: Doc. RNDr. Karol Flachbart, DrSc.
Zástupca riaditeľa: RNDr. Alena Juríková, CSc.
Vedecký tajomník: Mgr. Pavol Szabó, CSc.
Predseda vedeckej rady: Doc. RNDr. Peter Kopčanský, CSc.
Člen snemu SAV: Prof. RNDr. Peter Samuely, DrSc.
Adresa: Watsonova 47, 040 01 Košice
Tel.: 055/7922201
Fax:
E-mail: sekr@saske.sk
Názvy a adresy detašovaných pracovísk:
• Laboratórium kozmickej fyziky na Lomnickom štíte
059 60 Tatranská Lomnica, tel.: 052/467 071
Vedúci detašovaných pracovísk:
• Laboratórium kozmickej fyziky na Lomnickom štíte
Prof. Ing. Karel Kudela, DrSc.
Typ organizácie: Rozpočtová od roku 1969
1.2. Údaje o zamestnancoch
Tabuľka 1a Počet a štruktúra zamestnancov
| Štruktúra zamestnancov | K |K |K |F |P |T |
| | | |do 35 | | | |
| | | |rokov | | | |
| | |M |Ž |M |Ž | | | |
| Celkový počet zamestnancov |147 |94 |53 |19 |10 |129 |108,98 |71,28 |
| Vedeckí pracovníci |92 |66 |26 |14 |7 |81 |67,85 |61,24 |
| Odborní pracovníci VŠ |27 |16 |11 |5 |3 |25 |21,05 |9,04 |
| Odborní pracovníci ÚS |16 |6 |10 |0 |0 |11 |10,51 |1 |
| Ostatní pracovníci |12 |6 |6 |0 |0 |12 |9,57 |0 |
K – kmeňový stav zamestnancov v pracovnom pomere k 31.12.2014 (uvádzať zamestnancov v pracovnom pomere, vrátane riadnej materskej dovolenky, zamestnancov pôsobiacich v zahraničí, v štátnych funkciách, členov Predsedníctva SAV, zamestnancov pôsobiacich v zastupiteľských zboroch)
F – fyzický stav zamestnancov k 31.12.2014 (bez riadnej materskej dovolenky, zamestnancov pôsobiacich v zahraničí v štátnych funkciách, členov Predsedníctva SAV, zamestnancov pôsobiacich v zastupiteľských zboroch)
P – celoročný priemerný prepočítaný počet zamestnancov
T – celoročný priemerný prepočítaný počet riešiteľov projektov
M, Ž – muži, ženy
Tabuľka 1b Štruktúra vedeckých pracovníkov (kmeňový stav k 31.12.2014)
| Rodová skladba | Pracovníci s hodnosťou | Vedeckí pracovníci v stupňoch |
| | DrSc. |CSc./PhD. | prof. | doc. | I. | IIa. | IIb. |
| Muži |12 |54 |6 |7 |21 |26 |19 |
| Ženy |0 |26 |0 |0 |0 |11 |15 |
Tabuľka 1c Štruktúra pracovníkov podľa veku a rodu, ktorí sú riešiteľmi projektov
| Veková štruktúra (roky) | < 31 | 31-35 | 36-40 | 41-45 | 46-50 | 51-55 | 56-60 | 61-65 | > 65 |
| Muži |1 |6 |3 |4 |3 |8 |17 |9 |4 |
| Ženy |0 |4 |8 |3 |7 |2 |0 |1 |0 |
Tabuľka 1d Priemerný vek zamestnancov organizácie k 31.12.2014
| | Kmeňoví zamestnanci | Vedeckí pracovníci | Riešitelia projektov |
| Muži |50,0 |50,3 |52,8 |
| Ženy |44,2 |41,2 |42,5 |
| Spolu |47,9 |47,8 |49,6 |
1.3. Iné dôležité informácie k základným údajom o organizácii a zmeny za posledné obdobie (v zameraní, v organizačnej štruktúre a pod.)
2. Vedecká činnosť
2.1. Domáce projekty
Tabuľka 2a Počet domácich projektov riešených v roku 2014
|ŠTRUKTÚRA PROJEKTOV |Počet projektov |Čerpané financie |
| | |za rok 2014 (v €) |
| |A |B |A |B |
| | | |spolu |pre | |
| | | | |organi- | |
| | | | |záciu | |
| 1. Vedecké projekty, ktoré boli |27 |1 |179205 |179205 |612 |
|r. 2014 financované VEGA | | | | | |
| 2. Projekty, ktoré boli r. 2014 |5 |8 |271598 |219962 |114543 |
|financované APVV | | | | | |
| 3. Projekty OP ŠF |4 |3 |1341975 |1341975 |320318 |
| 4. Projekty centier excelentnosti SAV |1 |0 |27211 |20211 |- |
| 5. Iné projekty (FM EHP, ŠPVV, |0 |0 |- |- |- |
|Vedecko-technické projekty, ESF, | | | | | |
|na objednávku rezortov a pod.) | | | | | |
A - organizácia je nositeľom projektu
B - organizácia sa zmluvne podieľa na riešení projektu
Tabuľka 2b Počet návrhov domácich projektov podaných v roku 2014
| Štruktúra projektov | Miesto podania | Organizácia je nositeľom | Organizácia sa zmluvne |
| | |projektu |podieľa na riešení projektu |
| 1. Účasť na nových výzvach APVV | - | 8 | 3 |
|r. 2014 | | | |
| 2. Projekty výziev OP ŠF | Bratislava | | |
|podané r. 2014 | | | |
| | Regióny | | |
2.2. Medzinárodné projekty
2.2.1. Medzinárodné projekty riešené v roku 2014
Tabuľka 2c Počet medzinárodných projektov riešených v roku 2014
|ŠTRUKTÚRA PROJEKTOV |Počet projektov |Čerpané financie |
| | |za rok 2014 (v €) |
| |A |B |A |B |
| | | |spolu |pre | |
| | | | |organi- | |
| | | | |záciu | |
| 1. Projekty 7. Rámcového |0 |0 |- |- |- |
|programu EÚ | | | | | |
| 2. Multilaterálne projekty v rámci |2 |3 |63200 |63200 |25200 |
|vedeckých programov COST, | | | | | |
|ERANET, INTAS, EUREKA, | | | | | |
|ESPRIT, PHARE, NATO, UNESCO, | | | | | |
|CERN, IAEA, ESF (European | | | | | |
|Science Foundation), ERDF a iné | | | | | |
| 3. Projekty v rámci medzivládnych |0 |0 |- |- |- |
|dohôd o vedecko-technickej | | | | | |
|spolupráci | | | | | |
| 4. Bilaterálne projekty |4 |0 |3694 |3694 |- |
| 5. Podpora medzinárodnej |0 |0 |- |- |- |
|spolupráce z národných zdrojov | | | | | |
|(MVTS, APVV,...) | | | | | |
| 6. Iné projekty financované alebo |0 |0 |- |- |- |
|spolufinancované zo zahraničných | | | | | |
|zdrojov | | | | | |
A - organizácia je nositeľom projektu
B - organizácia sa zmluvne podieľa na riešení projektu
2.2.2. Medzinárodné projekty v 7. RP EÚ a Horizont 2020 podané v roku 2014
Projekty podané v Horizont 2020
I. Excellent Science
European Research Council
Future and Emerging Technologies
Marie Sklodowska-Curie actions
Research infrastructures: European Microkelvin Platform
Zodpovedný za spoluriešiteľskú organizáciu ÚEF SAV: RNDr. Peter Skyba, DrSc.
IV. Spreading excellence and widening participation
Teaming of excellent research institutions and low performing RDI regions:
Košice Team / Cassovia Institute for Research and Technology
Twinning of research institutions
ERA chairs
Podávateľ: VÚC Košice
Zodpovedný za spoluriešiteľskú organizáciu ÚEF SAV: prof. Peter Samuely, DrSc.
Call: ERC-2014-SUPPORT-1
Type of action: CSA
Proposal Title: Microscopy Popularization in the European Society - MicroPopS. Connecting people who think big about very small things
Zodpovedný za spoluriešiteľskú organizáciu ÚEF SAV: RNDr. Zuzana Gažová, CSc.
Výzva: H2020-LCE-2014/2015
LCE 1 - 2014: New knowledge and technologies
Názov Projektu: Magnetocaloric Materials for a More Sustainable and Efficient Energy Technology in Cooling Devices – MAGMACOLD
Zodpovedný za spoluriešiteľskú organizáciu ÚEF SAV: RNDr. Ivan Škorvánek CSc.
Tabuľka 2d Počet projektov 7. RP EÚ a Horizont 2020 v roku 2014
| | A | B |
| Počet podaných projektov | | |
|v 7. RP EÚ | | |
| Počet podaných projektov | | 4 |
|Horizont 2020 | | |
A - organizácia je nositeľom projektu
B - organizácia sa zmluvne podieľa na riešení projektu
Údaje k domácim a medzinárodným projektom sú uvedené v Prílohe B.
2.2.3. Zámery na čerpanie štrukturálnych fondov EÚ v ďalších výzvach
2.3. Najvýznamnejšie výsledky vedeckej práce (maximálne 1000 znakov + 1 obrázok)
2.3.1. Základný výskum
I. miesto
Vplyv vysokého tlaku na supravodivosť YB6
Projekty: VEGA 2/0135/13, VEGA 2/0106/13, APVV 0036-11, APVV 0132-11, APVV-VVCE 0058, CFNT MVEP - the Center of Excellence of the Slovak Academy of Sciences, 7th FP EU-Microkelvin, COST action MP1201, EU ERDF-ITMS 26220120005, EU ERDF-ITMS26110230034, EU ERDF-ITMS26110230097
Riešitelia: S. Gabáni, I. Takáčová, G. Pristáš, E. Gažo, K. Flachbart, P. Samuely
Vplyv tlaku na supravodivé vlastnosti dvoch vzoriek YB6 (Tc = 5.9 and 7.5 K) bol skúmaný meraním elektrickej rezistivity, magnetickej susceptibility a RTG rozptylu až do 320 kbar. Merania magnetorezistivity pri nízkych teplotách až do 60 mK a pri tlakoch do 47 kbar poukazujú na negatívny vplyv tlaku na Tc aj na horné kritické pole Hc3 s relatívnou zmenou dlnTc/dp = −0.59%/kbar a dlnHc3/dp = −1.1%/kbar. Merania magnetickej susceptibility dokazujú, že veľkosť dlnTc/dp neostáva konštantná a výrazne klesá až na trikrát menšiu hodnotu pri tlaku 112 kbar. Merania mriežkovej konštanty vykazujú zmenšenie objemu V až o 14 % pri tlaku 320 kbar. Získaná objemová závislosť lnTc vslnV analyzovaná McMillanovou formulou pre Tc indikuje, že pokles teploty prechodu do supravodivého stavu je spôsobený najmä tvrdnutím Einsteinovho fonónového módu, ktorý je zodpovedný za supravodivú väzbu. Tento predpoklad bol potvrdený pomocou tzv. tepelnej spektroskopie analýzou elektrickej rezistivity v normálnom stave pri rôznych tlakoch.
S. Gabáni, I. Takáčová, G. Pristáš, E. Gažo, K. Flachbart, T. Mori, D. Braithwaite, M. Míšek, K.V. Kamenev, M. Hanfland and P. Samuely: High-pressure effect on the superconductivity of YB6. Physical Review B 90, 045136 (2014).
II.miesto
Určenie operačnej efektívnosti JEM-EUSO experimentu
Projekty: MVTS JEM-EUSO
Riešitelia: P. Bobík, B. Pastirčák, M. Putiš
Odhad operačnej efektívnosti JEM-EUSO experimentu je kľúčovou časťou doterajšieho hlavného článku JEM-EUSO kolaborácie (Adams et.al., Astroparticle Physics). OKF má výrazný podiel na prácach na odhade operačnej efektívnosti experimentu. Operačná efektívnosť je odhadom času počas ktorého môže JEM-EUSO detektor na ISS pozorovať kozmické žiarenie ultravysokých energií (UHECR eventy) ako podielu z celkového času na orbite. Z operačnej efektívnosti experimentu sa určuje expozícia experimentu a z nej sa odhaduje počet UHECR eventov registrovaných detektorom. Na základe počtu zaregistrovaných eventov sa dá odhadnúť doba potrebná na nájdenie zdrojov UHECR. Okrem hlavného kolaboračného článku je odhad operačnej efektívnosti časťou ďalších dvoch článkov (Bertaina, Experimental Astronomy)(Bertaina, Advances in Space Research).
Adams J. H., ..., Bobik P., ... , Kudela K., ..., Pastircak B. ... et al.: An evaluation of the exposure in nadir observation of the JEM-EUSO mission, Astroparticle Physics, Volume: 44, Pages: 76-90, DOI: 10.1016/j.astropartphys.2013.01.008 (2013)
Bertaina M., Bobik P., Fenu F., Shinozaki K.: JEM-EUSO observational technique and exposure, Experimental Astronomy, Online First 03/2014, 2014ExA...tmp....9B (2014)
Bertaina M., Biktemerova S., Bittermann K., Bobik P., Campana D., Fenu F., Gorgi A., Guarino F., Guzmán A., Higashide K., Medina-Tanco G., Mernik T., Naumov D., Putis M., Rodríguez Frías M. D., Sáez Cano G., Santangelo A., Shinozaki K., Toscano S.: Performance and air-shower reconstruction techniques for the JEM-EUSO mission, Advances in Space Research, 53, 10, 1515 (2014)
2.3.2. Aplikačný typ
I. miesto
Nanosegregácia hydrofóbnych látok vo vodných roztokoch
Projekty: VEGA 2/0182/14, APVV 0486-10, COST action CM-1101
Riešitelia: M. Sedlák, D. Rak
Nové originálne výsledky boli získané v oblasti nanosegregácie (resp. tzv. mezoškálovej fázovej separácie) v roztokoch a kvapalných zmesiach. Zistili sme, že v prípade ternárnych systémov, teda trojzložkových systémov voda/látka1/látka2, kde látka1 je vodorozpustná resp. vodou miešateľná látka a látka 2 je hydrofóbna látka s minimálnou rozpustnosťou vo vode prítomná v nízkych koncentráciách, dochádza k situácii, že látka2 nie je ani molekulárne rozpustená v zmesi, ani sa neseparuje makrofázovo, ale dochádza k tzv. mezoškálovej separácii na nanoúrovni – separuje sa vo forme stabilných nanoštruktúr (nanokvapiek, nanočastíc). Tento mechanizmus platí aj v prípade keď sa v systéme nachádza viac minoritných komponentov, t.j. viac typov hydrofóbnych látok v malých koncentráciách, čo je bežná situácia vo vedeckej praxi aj reálnom živote. Zavádza sa úplne nový fyzikálno-chemický pojem tzv. mezoškálovej rozpustnosti („mesoscale solubility“) čo má ako nový fenomén hodne veľa významných implikácií vo viacerých smeroch vedy aj aplikačnej praxe. Poznanie týchto javov a mechanizmov nanosegregácie „z prvej ruky“ nám umožnilo (ešte pred samotným publikovaním) podať patentovú prihlášku vynálezu týkajúcu sa spôsobu merania obsahu alkánov v alkoholoch metódou nanosegregácie vo vodných roztokoch. Po podaní slovenskej prihlášky bola následne podaná medzinárodná PCT patentová prihláška.
M. Sedlák, D. Rak: Spôsob merania obsahu alkánov v alkoholoch metódou nanosegregácie vo vodných roztokoch, Úrad Priemyselného Vlastníctva SR, číslo prihlášky: PP50002-2014.
M. Sedlák, D. Rak: On the Origin of Mesoscale Structures in Aqueous Solutions of Tertiary Butyl Alcohol: The Mystery
Resolved. J. Phys. Chem. B 118 (10), pp 2726–2737, 2014.
II. miesto
Zariadenie na získavanie elektrickej energie z vibrácií v okolitom prostredí na báze magneticky mäkkých nanokryštalických materiálov
Projekty: MNT ERA NET II STREAM, APVV 0492-11, VEGA 2/0192/13, CFNT MVEP - the Center of Excellence of the Slovak Academy of Sciences
Riešitelia: I. Škorvánek, J. Kováč, J. Marcin, M. Varga
Bol vyvinutý prototyp zariadenia na získavanie energie z vibrácií v okolitom prostredí, ktoré využiva nanokryštalické materiály. Zariadenie pozostáva z dvoch malých permanentných magnetov pevne spojených s nemagnetickou pružinou, ktoré v dôsledku vonkajších mechanických vibrácií oscilujú v blízkosti cievky s jadrom z magneticky mäkkej nanokryštalickej zliatiny. Cyklické premagnetovanie jadra zloženého z viacerých nanokryštalických kovových pásikov zlepených epoxidovou živicou vedie k vzniku indukovaného napätia v cievke. Účinnosť premeny mechanickej energie vibrácií na elektrickú energiu je výrazným spôsobom ovplyvňovaná magnetickými vlastnosťami jadra. Požadovaná kombinácia vysokej magnetickej permeability a vysokej magnetickej polarizácie bola dosiahnutá optimalizáciou kompozičného zloženia a parametrov termomagnetického spracovania nanokryštalických zliatin v externom magnetickom poli. Najlepšie výsledky boli získané pre jadro pozostávajúce z nanokryštalickej zliatiny Fe73.5Si13.5B9Nb3Cu1 spracovanej v pozdĺžnom magnetickom poli, pre ktoré bol pri frekvencii vibrácií 50 Hz a zrýchlení 1 g (9,8 m/s2) dosiahnutý maximálny výstupný výkon zariadenia približne 30mW.
H. Chiriac, M. Tibu, N. Lupu, I. Škorvánek, T.A. Ovári: Nanocrystalline ribbons for energy harvesting applications. Journal of Applied Physics, 115, 17A320. (2014).
I.Škorvánek, J. Marcin, J. Kováč, P. Švec, N. Lupu, H. Chiriac: Tuning of soft magnetic properties in FeCo- and FeNi- based amorphous and nanocrystalline alloys by thermal processing in external magnetic field. Material Science Forum, 2014, 783-786, pp. 1937-1942 (2014).
J.S. Blazquez, J. Marcin, M. Varga, V. Franco, A. Conde, I. Škorvánek: Influence of microstructure on the enhancement of soft magnetic character and the induced anisotropy of field annealed HITPERM-type alloys, Journal of Applied Physics, 117, 17A301. (2015).
2.3.3. Medzinárodné vedecké projekty
I. miesto
Historicky prvé pristátie na kométe
Projekt: ESA-Rosetta
Riešitelia: Európska kozmická agentúra ESA, Space Technology Ireland (STIL), ÚEF-SAV, Oddelenie kozmickej fyziky (J. Baláž).
V rámci vedecko-technickej spolupráce medzi STIL a ÚEF SAV sa Odd. kozmickej fyziky ÚEF v rokoch 2000 a 2001 podieľalo na konštrukcii kritického servisného systému ESS vesmírnej sondy Rosetta. Úlohou systému ESS bolo riadiť oddelenie pristávacieho modulu (landera) Philae od hlavnej sondy (orbitera) a zabezpečovať digitálnu komunikáciu medzi nimi. Sonda Rosetta štartovala do kozmu 2.marca 2004 a ku kométe 67P/Čurjumov-Gerasimenko letela vyše 10 rokov. Dňa 6. augusta 2014 došlo k tesnému priblíženiu ku kométe a zosynchronizovaniu orbity sondy s kométou. K oddeleniu landera a jeho pristátiu na povrchu kometárneho jadra napokon došlo 12. novembra 2014, čím sa tento dátum stal historickým míľnikom v dejinách kozmonautiky. Servisný systém ESS pracoval počas týchto operácií bezchybne. Na základe požiadaviek letovej dynamiky ESS inicioval oddelenie Philae s rýchlosťou 19 cm/s a zabezpečoval spoľahlivú komunikáciu medzi landerom a orbiterom až do vybitia batérií landera a jeho hibernácie. Vedecké dáta získané modulom Philae sa priebežne analyzujú.
II. miesto
Deformačné mechanizmy v nanokryštalických PdAu zliatinách
Projekty: VEGA 2/0185/11, VEGA 2/0045/14, SAS-NASU, EU ERDF-ITMS 26220120021, EU ERDF-ITMS26220120033, EU ERDF-ITMS26110230097
Riešitelia: J. Miškuf, K. Csach
Štúdium plastickej deformácie v nanokryštalickej Pd-10 at.% Au zliatine s priemernou veľkosťou zŕna 14 nm zaťažovanej v jednoosom tlaku v intervale teplôt 4,2 až 300 K ukázalo, že zníženie veľkosti zrna z 10 ?m až na 14 nm má za následok zvýšenie pevnosti 4,7 – 6,4 krát. Bol vyslovený predpoklad, že za deformačné spevnenie pri znížení veľkosti zrna a poklese teploty je zodpovedný mikromechanizmus plastickej deformácie poklzami po hraniciach zŕn. Porušenie je na makroskopickej úrovni krehké, avšak na mikroskopickej úrovni pôsobí tvárny mechanizmus porušenia, analogicky mikromechanizmom plastickej deformácie pri tvárnom porušení amorfných kovových materiálov.
Ivanisenko Yu., Tabachnikova E.D., Psaruk I.A., Smirnov S.N., Kilmametov A., Kobler A., Kuebel C., Kurmanaeva L., Csach K., Mishkuf J., Scherer T., Semerenko Y.A., Hahn H.: Variation of the deformation mechanisms in a nanocrystalline Pd – 10 at.% Au alloy at room and cryogenic temperatures, International Journal of Plasticity 60, (2014), pp. 40 – 57.
2.4. Publikačná činnosť (úplný zoznam je uvedený v Prílohe C)
Tabuľka 2e Štatistika vybraných kategórií publikácií
| PUBLIKAČNÁ A EDIČNÁ ČINNOSŤ |A |B |C |
| |Počet v r. 2014/ doplnky|Počet v r. 2014/ doplnky|Počet v r. 2014/ doplnky|
| |z r. 2013 |z r. 2013 |z r. 2013 |
|1. Vedecké monografie vydané v domácich vydavateľstvách |0 / 0 |0 / 0 |0 / 0 |
|(AAB, ABB, CAB) | | | |
|2. Vedecké monografie vydané v zahraničných vydavateľstvách |0 / 0 |0 / 0 |0 / 0 |
|(AAA, ABA, CAA) | | | |
|3. Odborné monografie, vysokoškolské učebnice a učebné texty |0 / 0 |0 / 0 |0 / 0 |
|vydané v domácich vydavateľstvách (BAB, ACB) | | | |
|4. Odborné monografie a vysokoškolské učebnice a učebné texty |0 / 0 |0 / 0 |0 / 0 |
|vydané v zahraničných vydavateľstvách (BAA, ACA) | | | |
|5. Kapitoly vo vedeckých monografiách vydaných v domácich |0 / 0 |0 / 0 |0 / 0 |
|vydavateľstvách (ABD, ACD) | | | |
|6. Kapitoly vo vedeckých monografiách vydaných v zahraničných |0 / 0 |0 / 0 |0 / 0 |
|vydavateľstvách (ABC, ACC) | | | |
|7. Kapitoly v odborných monografiách, vysokoškolských učebniciach |0 / 0 |0 / 0 |0 / 0 |
|a učebných textoch vydaných v domácich vydavateľstvách (BBB, ACD) | | | |
|8. Kapitoly v odborných monografiách, vysokoškolských učebniciach |0 / 0 |0 / 0 |0 / 0 |
|a učebných textoch vydaných v zahraničných vydavateľstvách (BBA, | | | |
|ACC) | | | |
|9. Vedecké a odborné práce v časopisoch evidovaných v Current |234 / 1 |0 / 0 |1 / 0 |
|Contents Connect (CCC) | | | |
|(ADC, ADCA, ADCB, ADD, ADDA, ADDB, CDC, CDCA, CDCB, CDD, CDDA, | | | |
|CDDB, BDC, BDCA, BDCB, BDD, BDDA, BDDB) | | | |
|10. Vedecké a odborné práce v časopisoch neevidovaných v CCC |21 / 0 |0 / 0 |0 / 0 |
|(ADE, ADEA, ADEB, ADF, ADFA, ADFB, CDE, CDEA, CDEB, CDF, CDFA, | | | |
|CDFB, BDE, BDEA, BDEB, BDF, BDFA, BDFB) | | | |
|11. Vedecké a odborné práce v zborníkoch vydaných tlačou alebo na | |
|CD | |
|a/ recenzované práce a publikované pozvané príspevky |20 / 0 |0 / 0 |0 / 0 |
|(AEC, AED, AFA, AFB, AFBA, AFBB, BEC, BED) | | | |
|b/ nerecenzované práce |3 / 0 |0 / 0 |0 / 0 |
|(AEE, AEF, AFC, AFD, AFDA, AFDB, BEE, BEF, CEC, CED) | | | |
|12. Vydané periodiká evidované v CCC |0 |0 |0 |
|13. Ostatné vydané periodiká |0 |0 |0 |
|14. Vydané alebo editované zborníky z vedeckých podujatí |0/0 |0/0 |0/0 |
|(FAI) | | | |
|15. Vedecké práce uverejnené na internete |0 / 0 |0 / 0 |0 / 0 |
|(GHG) | | | |
|16. Preklady vedeckých a odborných textov |0 / 0 |0 / 0 |0 / 0 |
|(EAJ) | | | |
|17. Heslá v Encyklopédii Beliana a iných encyklopédiách a |0 / 0 |0 / 0 |0 / 0 |
|terminologických slovníkoch | | | |
|(BDA, BDB) | | | |
A - pracovisko SAV je uvedené ako pracovisko (adresa) autora, alebo je súčasťou kolaborácie alebo iného združenia, ktoré je uvedené ako pracovisko (adresa) autora
B - pracovisko SAV nie je na publikácii uvedené, pretože prameň údaj o pracovisku autora neobsahuje, práca ale vznikla na pracovisku SAV
C - pracovisko SAV je uvedené ako materské pracovisko autora odlišné od pracoviska, na ktorom práca vznikla (napr. „on leave...“, „permanent address...“, „present address...“)
Tabuľka 2f Ohlasy
| OHLASY |A |B |
| |Počet v r. 2013/ doplnky z |Počet v r. 2013/ doplnky z |
| |r. 2012 |r. 2012 |
| Citácie vo WoS (1.1, 2.1) |3430 / 101 |0 / 0 |
| Citácie v SCOPUS (1.2, 2.2) |25 / 3 |0 / 0 |
| Citácie v iných citačných indexoch a databázach (9, 10) |0 / 0 |0 / 0 |
| Citácie v publikáciách neregistrovaných v citačných |1 / 0 |0 / 0 |
|indexoch (3, 4) | | |
| Recenzie na práce autorov z organizácie (5, 6, 7, 8) |2 / 0 |0 / 0 |
* počet citácií v databáze WoS s veľkými kolaboráciami je 3430/101, bez veľkých kolaborácií 593/101
A - pracovisko SAV je uvedené ako pracovisko (adresa) autora, alebo je súčasťou kolaborácie alebo iného združenia, ktoré je uvedené ako pracovisko (adresa) autora, alebo pracovisko SAV nie je na publikácii uvedené, pretože prameň údaj o pracovisku autora neobsahuje, práca ale vznikla na pracovisku SAV
B - pracovisko SAV je uvedené ako materské pracovisko autora odlišné od pracoviska, na ktorom práca vznikla (napr. „on leave...“, „permanent address...“, „present address...“)
2.5. Aktívna účasť na vedeckých podujatiach
Tabuľka 2g Vedecké podujatia
| Prednášky a vývesky na medzinárodných vedeckých podujatiach | 110 |
| Prednášky a vývesky na domácich vedeckých podujatiach | 4 |
2.6. Vyžiadané prednášky
2.6.1. Vyžiadané prednášky na medzinárodných vedeckých podujatiach
1 KOPČANSKÝ, Peter. How to induce high sensitivity of liquid crystal to external magnetic field? In PM 2014 : European Conference Physics of Magnetism, June 23 - 27, 2014, Poznaň, Poland, invited talk.
2 KOPČANSKÝ, Peter. Feronematics. In 18th Conference of Czech and Slovak Physicists, September 16-19, 2014, Olomouc, Czech Republic, invited lecture.
3 KOPČANSKÝ, Peter. Interaction of magnetic fluids with amyloid sstructures. In PLMMP 2014: 6th International Conference Physics of Liquid Matter: Modern Problems, May 23th-27th, 2014, Kyiv, Ukraine, invited lecture.
4 KOPČANSKÝ, Peter. The effects of amyloid structure disaggregation in the presence of magnetic fluids and magnetic fields. In 43rd Winter School on Wave Acoustics and 10th Winter Workshop on Molecular Acoustics, Relaxation and Calorimetric Methods, 4.3. - 7.3. 2014, Szczyrk, Poland, invited talk.
5 KUDELA, Karel. Quasi-periodic variations of low energy cosmic rays. In STP 13 : 13th Solar terrestrial Physics symposium, October 12 - 18, 2014, Xian, China, invited talk.
6 KUDELA, Karel. On quasi-periodic variations of low energy cosmic rays observed near Earth. In ICHLNRRA 2014 : 8th International Conference on High Levels of Natural Radiation and Radon Areas, September 1 - 5, 2014, Prague, Czech Republic, invited talk.
7 SAMUELY, Peter. MoC ultrathin superconducting films on verge to the insulating state. In S-HY-NE-D 2014 : Physics and Applications of Superconducting Hybrid Nano-Engineered Devices, August 31 - September 4, 2014, Castellabate, Italy, invited lecture.
8 SZABÓ, Pavol. Superconductivity near the superconductor-insulator transition in MoC thin films Nanoscale superconductivity. In Advances in Nanostructures Superconductors: Materials, Properties and Theory, 4th to 7th May, 2014, Madrid, Spain, invited lecture.
9 ŠKORVÁNEK, Ivan - MARCIN, Jozef - CAPIK, Marek - VARGA, Marek - JANOTOVÁ, Irena - ŠVEC, Peter. Field-annealed amorphous and nanocrystalline bilayer ribbons with tailorable soft magnetic properties. In MAP6 : 6th International Workshop on Materials Analysis and Processing in Magnetic Fields, 8 - 11 July, 2014, Okinawa, Japan, invited lecture, p. 2-3.
10 ŠKORVÁNEK, Ivan - MARCIN, Jozef - VARGA, Marek - MAŤKO, Igor - ŠVEC, Peter. Rapidly Quenched Amorphous and Nanocrystalline Bilayer Ribbons for Energy and Sensor Applications. In EMN 2014 : 8th International conference on energy, materials and nanotechnology, 22 - 25 November 2014, Orlando, Florida, invited talk SS-06, p. 100.
11 ŠKORVÁNEK, Ivan - MARCIN, Jozef - CAPIK, Marek - JANIČKOVIČ, Dušan - ŠVEC, Peter. Amorphous and nanocrystalline bilayer ribbons with tailorable soft magnetic properties. In ICSM 2014 : 4th International Conference on Superconductivity and Magnetism, 27 April 2014 - 2 May 2014, Antalya, Turkey, invited talk.
12 ŠKORVÁNEK, Ivan. Field-annealed Soft Magnetic Amorphous and Nanocrystalline Ribbons with Improved Energy Performance. In CIMTEC 2014 : 6th Forum on New Materials, June 15-19, 2014, Montecatini Terme, Italy, invited lecture.
13 TIMKO, Milan. The hyperthermic effect in bacterial nanoparticles. In 43rd Winter School on Wave Acoustics and 10th Winter Workshop on Molecular Acoustics, Relaxation and Calorimetric Methods, 4.3. - 7.3. 2014, Szczyrk, Poland, invited talk.
14 FLACHBART, Karol. Nature of electrical conductivity in topological insulatol SmB6 at low temperatures. In ISBB 2014 : 18th International Symposium on Boron, Borides and Related Materials, August 31 - September 5, 2014, Honolulu, Hawaii, USA, invited talk.
2.6.2. Vyžiadané prednášky na domácich vedeckých podujatiach
2.6.3. Vyžiadané prednášky na významných vedeckých inštitúciách
1 KUDELA Karel, Kosmické záření: z historie výzkumu, Fakultní kolokvium FJFI ČVUT v Praze, 26.2.2014.
2 ANTALÍK, Marián, Chemické a biochemické možnosti prípravy nanomateriálov Ústav prístrojovej techniky, ČAV, Brno, 5.3.2014
3 SZABÓ, Pavol, et al.,: The Košice Low Temperature STM, ESPCI-ParisTech and University Pierre et Maire Curie, Paríž, 6.11. 2014
4 SZABÓ Pavol, et al.,: Superconductivity near the superconductor-insulator transition in thin films, ESPCI-ParisTech and University Pierre et Maire Curie, Paríž, 6.11. 2014
5 SZABÓ, Pavol, et al.,: The influence of inceased disorder for the superconducting properties in MoC thin films, UAM Madrid, 13.5.2014
6 GAŽOVÁ, Zuzana: Amyloid aggregation of proteins – focus on inhibitors, Instituto Per Lo Studio dei materiali nanostrutturati, Bologna, 28. 11. 2014
7 SAMUELY, Peter et al.,: Physics of CuTiSe2, Institut Néel, CNRS, Grenoble, september 2014
8 SAMUELY, Peter et al.,: Superconductor Insulator transition, in disordered films, CNRS, Grenoble, september 2014
9 KAČMARČÍK Jozef et al.,: Magnetic phase diagram in CeCoIn5, CEA Grenoble, sept. 2014
10 SAMUELY Peter et al.,: Superconductor Insulator transition, in disordered films, FMFI UK Bratislava, 26. september 2014
11 SKYBA Peter et al.,: Spin wave analogue of event horizon in superfluid 3He-B, MFF Karola Univerzita Praha, december 2014
12 TIMKO Milan: Hypertehermic effect in magnetosomes, Molecular and Biomolecular Physics, National Institute for Research and Development of Isotope and Molecular Technologies, Cluj-Napoca, Romania
13 KOPČANSKÝ Peter: “Ferronematics – composite systems of liquid crystal and magnetic nanoparticles of various shape, Molecular and Biomolecular Physics, National Institute for Research and Development of Isotope and Molecular Technologies ,Cluj-Napoca, Romania
14 TIMKO Milan: Magnetosomes and hypethermia, Institute of Continuous Media Mechanics, Russian Academy of Sciences, Russia
15 TOMAŠOVIČOVÁ Natália: Ferronematics-New results, Institute of Continuous Media Mechanics, Russian Academy of Sciences, Russia
16 KOPČANSKÝ Peter: Interaction of magnetic fluids with amyloid structures, Institute of Continuous Media Mechanics, Russian Academy of Sciences, Russia
17 KONERACKÁ Martina: Immobilization of biologically ACTIVE SUBSTANCES TO magnetic nanoparticles, University de Sao Paulo, Sao Paulo, 11.4.2014 Brazilia
18 TIMKO Milan: Magnetosomes-preparation and properties University de Sao Paulo, Sao Paulo, 11.4.2014 Brazilia
19 KOPČANSKÝ Peter: Anisotropic properties in liquid crystals containing magnetic nanoparticles, University de Sao Paulo, Sao Paulo, 11.4.2014 Brazilia
20 MIHÁLIK Marian: Synthesis, structure and magnetic properties of selected manganese based oxides, Ben Gurion Univerzita v Negeve, Beer Sheva, Izrael. (13.5.2014)
21 MIHÁLIK Marian: Magnetic nanoparticles of selected iron and manganese based oxides, na seminári Fyziky tuhých látok, Univerzita na Floride, Gainesville, USA. (29.9.2014)
22 GAŽOVÁ Zuzana: Interaction of magnetic nanoparticles with protein amyloid structures
University de Sao Paulo, Sao Paulo, 11.4.2014 Brazilia.
Ak boli príspevky publikované, sú súčasťou Prílohy C, kategória (AFC, AFD, AFE, AFF, AFG, AFH)
2.7. Patentová a licenčná činnosť na Slovensku a v zahraničí v roku 2014
2.7.1. Vynálezy, na ktoré bol udelený patent
Na Slovensku - počet patentov: 1
Číslo PV: 288071
Mená autorov: Sedlák Marián, Č. Koňák
Názov vynálezu: Polymérne nanočastice na báze homopolyméru poly(propylakrylovej kyseliny) a spôsob ich prípravy
Majiteľ / spolumajiteľ: ÚEF SAV
2.7.2. Prihlásené vynálezy
Na Slovensku - počet patentov: 2
Číslo PV: PP50002-2014
Mená autorov: Sedlák Marián, Rak Dmytro
Názov vynálezu: Spôsob merania obsahu alkánov v alkoholoch metódou nanosegregácie vo vodných roztokoch
Majiteľ / spolumajiteľ: ÚEF SAV
Číslo PV: PP 00067-2014
Mená autorov: Diko Pavel, Antal Vitaliy, Piovarči Samuel
Názov vynálezu: YBCO supravodičov spracovaný vysokotlakou oxidáciou
Majiteľ / spolumajiteľ: ÚEF SAV
V zahraničí - počet patentov: 2
Číslo PV: 201404260
Mená autorov: Kopčanský Peter, Timko Milan, Závišová Vlasta, Tomašovičová Natália, I.P. Studenjak, O.V.Kovalcuk
Názov vynálezu: Spôsob zvýšenia iónovej vodivosti kompozitu na báze kvapalných kryštálov
Majiteľ / spolumajiteľ: Užhorodská Univerzita, Užhorod, Ukrajina
Krajina: Ukrajina
Číslo PV: 201404255
Mená autorov: Kopčanský Peter, Timko Milan, Gažová Zuzana, Šipošová Katarína, Šipošová Katarína, I.P. Studenjak, O.V.Kovalcuk
Názov vynálezu: Metóda pre stanovenie optimálnej koncentrácie lyzozýmu pre vytvorenie lyotropného magnetického kvapalného kryštálu
Majiteľ / spolumajiteľ: Užhorodská Univerzita, Užhorod, Ukrajina
Krajina: Ukrajina
2.7.3. Predané licencie
2.7.4. Realizované patenty
Finančný prínos pre organizáciu SAV v roku 2014 a súčet za predošlé roky sa neuvádzajú, ak je zverejnenie v rozpore so zmluvou súvisiacou s realizáciou patentu.
2.8. Účasť expertov na hodnotení národných projektov (APVV, VEGA a iných)
Tabuľka 2h Experti hodnotiaci národné projekty
|Meno pracovníka |Typ programu/projektu/výzvy |Počet hodnotených |
| | |projektov |
| Gažová Zuzana |VEGA |1 |
| Musatov Andrey |VEGA |1 |
| Samuely Peter |APVV - VV |10 |
| Škorvánek Ivan |VEGA |3 |
2.9. Účasť na spracovaní hesiel do encyklopédie Beliana
Počet autorov hesiel: 0
2.10. Iné informácie k vedeckej činnosti.
3. Doktorandské štúdium, iná pedagogická činnosť a budovanie ľudských zdrojov pre vedu a techniku
3.1. Údaje o doktorandskom štúdiu
Tabuľka 3a Počet doktorandov v roku 2014
|Forma |Počet k 31.12.2014 |Počet ukončených doktorantúr v r. 2014 |
| |Doktorandi |Ukončenie z dôvodov |
| |celkový počet |z toho |ukončenie |predčasné |neúspešné |
| | |novoprijatí |úspešnou |ukončenie |ukončenie |
| | | |obhajobou | | |
| |M |Ž |M |Ž |M |Ž |M |Ž |M |Ž |
| Interná zo zdrojov SAV |8 |8 |1 |0 |1 |2 |0 |0 |0 |0 |
| Interná z iných zdrojov |0 |4 |0 |0 |0 |0 |0 |0 |0 |0 |
| Externá |1 |0 |0 |0 |0 |0 |0 |0 |0 |0 |
| Spolu |9 |12 |1 |0 |1 |2 |0 |0 |0 |0 |
| Súhrn |21 |1 |3 |0 |0 |
3.2. Zmena formy doktorandského štúdia
Tabuľka 3b Počty preradení
|Z formy |Interná z |Interná z |Interná z iných |Interná z iných |Externá |Externá |
| |prostriedkov SAV |prostriedkov SAV |zdrojov |zdrojov | | |
|Do formy |Interná z iných |Externá |Interná z |Externá |Interná z |Interná z iných |
| |zdrojov | |prostriedkov SAV | |prostriedkov SAV |zdrojov |
|Počet |0 |2 |0 |0 |0 |0 |
3.3. Zoznam doktorandov, ktorí ukončili doktorandské štúdium úspešnou obhajobou
Tabuľka 3c Menný zoznam ukončených doktorandov v roku 2014 úspešnou obhajobou
|Meno doktoranda |Forma DŠ |Mesiac, rok |Mesiac, rok |Číslo a názov študijného|Meno a organizácia |Fakulta udeľujúca |
| | |nástupu na DŠ |obhajoby |odboru |školiteľa |vedeckú hodnosť |
|Mgr. Martina |interné |9 / 2010 |8 / 2014 |4.1.3 fyzika |Ing. Martina Koneracká |Prírodovedecká fakulta |
|Kubovčíková |štúdium | | |kondenzovaných látok a |CSc., Ústav |UPJŠ |
| |hradené z | | |akustika |experimentálnej fyziky | |
| |prostriedkov| | | |SAV | |
| |SAV | | | | | |
|Ing. Matúš Molčan |interné |9 / 2010 |8 / 2014 |4.1.3 fyzika |RNDr. Milan Timko CSc., |Prírodovedecká fakulta |
| |štúdium | | |kondenzovaných látok a |Ústav experimentálnej |UPJŠ |
| |hradené z | | |akustika |fyziky SAV | |
| |prostriedkov| | | | | |
| |SAV | | | | | |
|Ing. Iveta Takáčová |interné |9 / 2010 |8 / 2014 |4.1.3 fyzika |RNDr. Slavomír Gabáni |Prírodovedecká fakulta |
| |štúdium | | |kondenzovaných látok a |PhD., Ústav |UPJŠ |
| |hradené z | | |akustika |experimentálnej fyziky | |
| |prostriedkov| | | |SAV | |
| |SAV | | | | | |
Zoznam interných a externých doktorandov je uvedený v Prílohe A.
3.4. Zoznam akreditovaných študijných programov s uvedením VŠ
Tabuľka 3d Zoznam akreditovaných študijných programov s uvedením univerzity/vysokej školy a fakulty
|Názov študijného programu (ŠP) |Názov študijného odboru (ŠO) |Číslo ŠO |Univerzita/vysoká škola a fakulta |
|Všeobecná fyzika a matematická fyzika | všeobecná fyzika a matematická fyzika | 4.1.2 |Prírodovedecká fakulta UPJŠ |
|Fyzika kondenzovaných látok | fyzika kondenzovaných látok a akustika | 4.1.3 |Prírodovedecká fakulta UPJŠ |
|Jadrová a subjadrová fyzika | jadrová a subjadrová fyzika | 4.1.5 |Prírodovedecká fakulta UPJŠ |
|Náuka o materiáloch a materiálové | materiály | 5.2.26 |Hutnícka fakulta TUKE |
|inžinierstvo | | | |
Tabuľka 3e Účasť na pedagogickom procese
| Menný prehľad pracovníkov, | Menný prehľad pracovníkov, | Menný prehľad pracovníkov, |
|ktorí boli menovaní |ktorí pôsobili ako členovia |ktorí získali vyššiu vedeckú, |
|do odborových komisií |vedeckých rád univerzít, |pedagogickú hodnosť |
|študijných programov |správnych rád univerzít a fakúlt |alebo vyšší kvalifikačný stupeň |
|doktorandského štúdia | | |
| Prof. Ing. Marián Antalík, DrSc. (biochémia) | Prof. Ing. Marián Antalík, DrSc. (Fakulta | |
| |chemickej a potravinárskej technológie STU) | |
| Prof. Ing. Marián Antalík, DrSc. (biochémia) | Prof. Ing. Marián Antalík, DrSc. | |
| |(Prírodovedecká fakulta UPJŠ) | |
| Doc. RNDr. Dušan Bruncko, CSc. (jadrová a | Doc. RNDr. Karol Flachbart, DrSc. | |
|subjadrová fyzika) |(Prírodovedecká fakulta UPJŠ) | |
| Ing. Pavel Diko, DrSc. (fyzika kondenzovaných| Prof. Ing. Karel Kudela, DrSc. (Vysoká škola | |
|látok a akustika) |bezpečnostného manažérstva v Košiciach) | |
| Ing. Pavel Diko, DrSc. (materiály) | Prof. RNDr. Marián Reiffers, DrSc. (Fakulta | |
| |humanitných a prírodných vied PU) | |
| RNDr. Pavol Farkašovský, DrSc. (všeobecná | Prof. RNDr. Marián Reiffers, DrSc. (Prešovská | |
|fyzika a matematická fyzika) |univerzita v Prešove) | |
| RNDr. Pavol Farkašovský, DrSc. (všeobecná | Prof. RNDr. Peter Samuely, DrSc. (Fakulta | |
|fyzika a matematická fyzika) |matematiky, fyziky a informatiky UK) | |
| prof.doc. RNDr. Michal Hnatič, DrSc. | Prof. RNDr. Peter Samuely, DrSc. (Technická | |
|(všeobecná fyzika a matematická fyzika) |univerzita v Košiciach) | |
| prof.doc. RNDr. Michal Hnatič, DrSc. (jadrová| Prof. RNDr. Peter Samuely, DrSc. (Univerzita | |
|a subjadrová fyzika) |Pavla Jozefa Šafárika v Košiciach) | |
| Doc. RNDr. Peter Kopčanský, CSc. (fyzika | | |
|kondenzovaných látok a akustika) | | |
| Doc. RNDr. Peter Kopčanský, CSc. (všeobecná | | |
|fyzika a matematická fyzika) | | |
| RNDr. Ivan Králik, CSc. (jadrová a subjadrová| | |
|fyzika) | | |
| Prof. Ing. Karel Kudela, DrSc. (jadrová a | | |
|subjadrová fyzika) | | |
| Prof. RNDr. Marián Reiffers, DrSc. (všeobecná| | |
|fyzika a matematická fyzika) | | |
| Prof. RNDr. Peter Samuely, DrSc. (fyzika | | |
|kondenzovaných látok a akustika) | | |
| RNDr. Marián Sedlák, DrSc. (mineralurgia) | | |
| RNDr. Marián Slivka, CSc. (jadrová a | | |
|subjadrová fyzika) | | |
| RNDr. Milan Stehlík, DrSc. (jadrová a | | |
|subjadrová fyzika) | | |
| RNDr. Ladislav Šándor, CSc. (jadrová a | | |
|subjadrová fyzika) | | |
| RNDr. Ivan Škorvánek, CSc. (fyzika | | |
|kondenzovaných látok a akustika) | | |
| Doc. Ing. Zoltán Tomori, CSc. (kybernetika) | | |
3.5. Údaje o pedagogickej činnosti
Tabuľka 3f Prednášky a cvičenia vedené v roku 2014
|PEDAGOGICKÁ ČINNOSŤ |Prednášky |Cvičenia a semináre |
| |doma |v zahraničí |doma |v zahraničí |
| Počet prednášateľov alebo vedúcich cvičení |5 |0 |4 |0 |
| Celkový počet hodín v r. 2014 |111 |0 |308 |0 |
Prehľad prednášateľov predmetov a vedúcich cvičení, s uvedením názvu predmetu, úväzku, katedry, fakulty, univerzity/vysokej školy je uvedený v Prílohe D.
Tabuľka 3g Aktivity pracovníkov na VŠ
|1. | Počet pracovníkov, ktorí pôsobili ako vedúci alebo konzultanti |19 |
| |diplomových a bakalárskych prác | |
| | | |
|2. | Počet vedených alebo konzultovaných diplomových a bakalárskych prác |25 |
| | | |
|3. | Počet pracovníkov, ktorí pôsobili ako školitelia doktorandov (PhD.) |12 |
| | | |
|4. | Počet školených doktorandov (aj pre iné inštitúcie) |18 |
| | | |
|5. | Počet oponovaných dizertačných a habilitačných prác |16 |
| | | |
|6. | Počet pracovníkov, ktorí oponovali dizertačné a habilitačné práce |11 |
| | | |
|7. | Počet pracovníkov, ktorí pôsobili ako členovia komisií pre obhajoby DrSc. |1 |
| |prác | |
| | | |
|8. | Počet pracovníkov, ktorí pôsobili ako členovia komisií pre obhajoby PhD. |7 |
| |prác | |
| | | |
|9. | Počet pracovníkov, ktorí pôsobili ako členovia komisií, resp. oponenti |5 |
| |v inauguračnom alebo habilitačnom konaní na vysokých školách | |
| | | |
3.6. Iné dôležité informácie k pedagogickej činnosti
3.6.1. Vedenie doktorandských prác na iných pracoviskách r. 2014
1. Školiteľ: RNDr. Jan Nemčík, CSc.
Pracovisko: Katedra fyziky FJFI CVUT, Praha
Študijný program: Aplikace přírodních věd/ Jaderné inženýrství
Meno a priezvisko doktoranda: Ing. Michal Křelina
Názov dizertačnej práce: Studium produkce hadronů s velkým pT v interakcích
na nukleonových a jaderných terčících
2. Školiteľ: prof. Ing. Karel Kudela, DrSc.
Pracovisko: ÚFV Prírodovedecká fakulta UPJŠ
Študijný program: 4.1.5 Jadrová a subjadrová fyzika (III. St. externá forma)
Meno a priezvisko doktoranda: Mgr. Mária Kancírová
Názov dizertačnej práce: Kozmické žiarenie: možné vplyvy na stav atmosféry.
3. Školiteľ: prof. Ing. Karel Kudela, DrSc.
Pracovisko: ÚFV Prírodovedecká fakulta UPJŠ
Študijný program: 4.1.5 Jadrová a subjadrová fyzika (III. St., interná forma)
Meno a priezvisko doktoranda: Mgr. Igor Parnahaj
Názov dizertačnej práce: Kvázi-periodické variácie kozmického žiarenia.
4. Školiteľ: doc. Ing. Zoltán Tomori, CSc.
Pracovisko: Univerzita P.J.Šafárika, PF, Ústav informatiky
Študijný program: Informatika, interná
Meno a priezvisko doktoranda: Ing. Radoslav Gargalík
Názov dizertačnej práce: Segmentácia 3D obrazov
5. Školiteľ: doc. Ing. Zoltán Tomori, CSc.
Pracovisko: Univerzita P.J.Šafárika, PF, Ústav informatiky
Študijný program: Informatika, interná
Meno a priezvisko doktoranda: Mgr. Matej Nikorovič
Názov dizertačnej práce: Metódy rozpoznávania 3D objektov
6. Školiteľ: prof. Ing. Marián Antalík, DrSc..
Pracovisko: Univerzita P.J.Šafárika, PF, Ústav chemických vied
Študijný program: Biochémia, interná
Meno a priezvisko doktoranda: RNDr. Júlia Kudláčová
Názov dizertačnej práce: Supramolekulárne komplexy biomakromolekúl
7. Školiteľ: prof. Ing. Marián Antalík, DrSc..
Pracovisko: Univerzita P.J.Šafárika, PF, Ústav chemických vied
Študijný program: Biochémia, interná
Meno a priezvisko doktoranda: Mgr. Monika Kvaková
Názov dizertačnej práce: Interakcie biomakromolekúl s nano a mikročasticami
8. Školiteľ: prof. Ing. Marián Antalík, DrSc..
Pracovisko: Univerzita P.J.Šafárika, PF, Ústav chemických vied
Študijný program: Biochémia, interná
Meno a priezvisko doktoranda: Ing. Peter Keš
Názov dizertačnej práce: Interakcie biomolekúl s kvapalnými kryštálmi
9. Školiteľ: RNDr. Zuzana Gažová, CSc. Pracovisko: Univerzita P.J.Šafárika, PF, Ústav chemických vied Študijný program: Biochémia, interná Meno a priezvisko doktoranda: RNDr. Zuzana Bednáriková Názov dizertačnej práce: Inhibítory amyloidného samousporiadania proteínov
4. Medzinárodná vedecká spolupráca
4.1. Medzinárodné vedecké podujatia
4.1.1. Medzinárodné vedecké podujatia, ktoré organizácia SAV organizovala v roku 2014 alebo sa na ich organizácii podieľala, s vyhodnotením vedeckého a spoločenského prínosu podujatia
NANOFLUID IX, Stará Lesná, Hotel Academia, 40 účastníkov, 29.09.-02.10.2014
Medzinárodného workshopu NANOFLUID IX , ktorý sa konal v kongresovom centre Stará Lesná v dńoch 29.9. – 2.10.2014 sa zúčastnilo 40 účastníkov z čoho bolo 27 významných vedeckých pracovníkov zo zahraničia. V rámci odborných prednášok boli prezentované nanjnovšie poznatky z oblasti teoretického a experimentálneho štúdia komplexných systémov obsahujúcich magnetické nanočastice (magnetické kvapaliny, feronematiká, ferogely, elastoméry) a možnosti ich aplikačného uplatnenia v technike, biológii a medicíne.
XVI. SMALL TRIANGLE MEETING, Humenné - Ptičie, 32 účastníkov, 05.10.-08.10.2014
Medzinárodná konferencia STM sa konala v dňoch 5.10. – 8.10.2014 v Humennom a zúčastnilo sa jej 32 účastníkov z čoho 26 boli významní vedci zo zahraničia. Účastníci konferencie v rámci odborných prednášok prezentovali najnovšie dosiahnuté výsledky v oblasti experimentálnej aj teoretickej práce v oblasti jadrovej fyziky, atómovej fyziky, fyziky tuhých látok a komplexných fyzikálnych systémov.
4.1.2. Medzinárodné vedecké podujatia, ktoré usporiada organizácia SAV v roku 2015 (anglický a slovenský názov podujatia, miesto a termín konania, meno, telefónne číslo a e-mail zodpovedného pracovníka)
9th international conference Structure and Stability of Biomacromolecules, SSB 2015/SSB 2015, Košice, 30.06.-03.07.2015, (Zuzana Gažová, 055/7204135, gazova@saske.sk)
Pravidelná konferencia bude zameraná na prezentáciu a diskusiu o súčasnom stave a vývoji štúdia biomakromolekúl vzhľadom na ich stabilitu, aktivitu, dynamiku a intermolekulárne interakcie zamerané na viazanie ligandov, agregáciu či tvorbu suprakomplexov.
4.1.3. Počet pracovníkov v programových a organizačných výboroch medzinárodných konferencií
Tabuľka 4a Programové a organizačné výbory medzinárodných konferencií
|Typ výboru |Programový |Organizačný |Programový i organizačný |
|Počet členstiev |2 |0 |2 |
4.2. Členstvo a funkcie v medzinárodných orgánoch
4.2.1. Členstvo a funkcie v medzinárodných vedeckých spoločnostiach, úniách a národných komitétoch SR
Doc. RNDr. Dušan Bruncko, CSc.
Kolaboračná rada experimentu ATLAS v CERN (funkcia: člen)
RNDr. Diana Fedunová, PhD.
European Biophysical Societies Association (funkcia: člen)
Doc. RNDr. Karol Flachbart, DrSc.
Americká fyzikálna spoločnosť (funkcia: člen)
Nemecká fyzikálna spoločnosť (funkcia: člen)
RNDr. Zuzana Gažová, CSc.
European Biophysical Societies Association (funkcia: člen)
RNDr. Viktor Kavečanský, CSc.
Kryštalografická spločnosť (funkcia: člen)
Prof. Ing. Karel Kudela, DrSc.
COSPAR (funkcia: predseda NK)
International Academy of Astronautics (funkcia: člen zvolený )
URSI (funkcia: člen NK)
RNDr. Ján Nemčík, CSc.
Centrum pre fyziku relativistických jadrových zrážok (CFRJS) FJFI ČVUT Praha
(funkcia: vedecký garant)
Prof. RNDr. Marián Reiffers, DrSc.
„Fellow“ – Institute of physics (funkcia: člen panelov pre prijímanie nových „fellow“)
Európska fyzikálna spoločnosť (funkcia: individuálny člen)
Rada Európskej fyzikálnej spoločnosti (funkcia: člen)
Prof. RNDr. Peter Samuely, DrSc.
Academia Europaea Scientiarum et Artium, Salzburg (funkcia: riadny člen )
APS (funkcia: člen)
RNDr. Marián Sedlák, DrSc.
American Chemical Society (funkcia: člen)
American Physical Society (funkcia: člen)
RNDr. Peter Skyba, DrSc.
IUPAP C5 Low Temperature Physics (funkcia: member)
RNDr. Marián Slivka, CSc.
SCOSTEP (funkcia: člen NK)
RNDr. Katarína Šipošová, PhD.
Biophysical Society (funkcia: člen)
RNDr. Ivan Škorvánek, CSc.
American Assoc. for Advancement of Science (funkcia: člen)
Humboldtov klub v SR (funkcia: podpredseda)
International Advisory Committee for Soft Magnetic Materials (funkcia: člen)
Magnetism Committee TMS Society USA (funkcia: člen)
Doc. Ing. Zoltán Tomori, CSc.
IEEE - Computer Society (funkcia: affiliat.)
4.3. Účasť expertov na hodnotení medzinárodných projektov (EÚ RP, ESF a iných)
Tabuľka 4b Experti hodnotiaci medzinárodné projekty
|Meno pracovníka |Typ programu/projektu/výzvy |Počet hodnotených |
| | |projektov |
| Bruncko Dušan |INGO II Projekt LG13009, oponent |1 |
| |INGO II Projekt LG13031, oponent |1 |
| |INGO II, Projekt LG12006, oponent |1 |
| |INGO II, Projekt LG13031, oponent |1 |
| |Projekt 7AMB15FR - Studium novych stavov latky na urychlovaci LHC, |1 |
| |dvojstranna spolupraca FU AVCR a CEA Saclay, oponent | |
| Samuely Peter |COST MP1201 nanoSC |10 |
| |Horizont 2020-MSCA-ITN-2014 |5 |
| Šándor Ladislav |Spolupráca ČR s CERN (program INGO-2) |1 |
4.4. Najvýznamnejšie prínosy MVTS ústavu vyplývajúce z mobility a riešenia medzinárodných projektov a iné informácie k medzinárodnej vedeckej spolupráci
Ústav experimentálnej fyziky SAV v Košiciach participuje v značnom počte významných medzinárodných vedecko-výskumných kolaborácií, či už sa jedná o odbor jadrovej a subjadrovej fyziky, kozmickej fyziky alebo široké spektrum odborov fyziky pevných látok až po biofyziku. Ako príklad je možné uviesť:
- v oblasti pevných látok spoluprácu s laboratóriami CNRS v Grenobli, University of Lancaster, UAM Madrid, s ústavmi Poľskej akedémie vied, Českej akadémie vied a Maďarskej akadémie vied, v roku 2014 bolo podpísané memorandum o spolupráci medzi UEF, SIT Tokyo a RAS Cernogolovka.
- v jadrovej a subjadrovej fyzike príspevok do experimentov ATLAS a ALICE na urýchľovači LHC v CERNe
- v kozmickej fyzike kolaboráciu JEM-EUSO
- v biofyzike spoluprácu s Institute of Physics Academia Sinica na Taiwane, Institute of Physics, Polish Academy of Sciences, Department of Biophysics "Carol Davila" University of Medicine and Pharmacy v Bukurešti a CNR v Bologni v Taliansku.
Prehľad údajov o medzinárodnej mobilite pracovníkov organizácie je uvedený v Prílohe E.
Prehľad a údaje o medzinárodných projektoch sú uvedené v kapitole 2 a Prílohe B.
5. Vedná politika
Ústav experimentálnej fyziky SAV v Košiciach patrí medzi najúspešnejšie ústavy v získavaní prostriedkov zo Štrukturálnych fondov EÚ v rámci SAV. Štrukturálne fondy EÚ predstavujú síce veľmi významný, ale časovo limitovaný zdroj prostriedkov významného skvalitnenia prístrojovej základne, a už vôbec neposkytujú prostriedky na ich prevádzku, údržbu a ďalší rozvoj. Z tohto dôvodu je nevyhnutné aby Agentúra na podporu výskumu a vývoja pravidelne a v dostatočnom objeme prostriedkov plnila svoju funkciu hlavného zdroja financovania trvalého a udržateľného rozvoja vedy a výskumu na Slovensku. Súčasne by bolo dobré, keby sa zvýšili možnosti zamestnávania post-docov cez podporný fond Štefana Schwarza
6. Spolupráca s univerzitami/vysokými školami, štátnymi a neziskovými inštitúciami okrem aktivít uvedených v kap. 2, 3, 4
6.1. Spolupráca s univerzitami/VŠ (fakultami)
Názov univerzity/vysokej školy a fakulty: Prírodovedecká fakulta UPJŠ
Druh spolupráce (spoločné pracovisko alebo iné): Centrum fyziky veľmi nízkych teplôt a materiálového výskumu v extrémnych podmienkach
Začiatok spolupráce: 2011
Zameranie: materiálový výskum pri extrémnych podmienkach
Zhodnotenie: Spoločné výskumné centrum excelentnosti APVV s PF UPJŠ, ÚMV SAV a ÚGt SAV
Názov univerzity/vysokej školy a fakulty: Prírodovedecká fakulta UPJŠ
Druh spolupráce (spoločné pracovisko alebo iné): Spoločné pracovisko
Začiatok spolupráce: 1969
Zameranie: Fyzika veľmi nízkych teplôt
Zhodnotenie: Centrum fyziky veľmi nízkych teplôt Košice je spoločné pracovisko ÚEF SAV a UPJŠ, ktoré je tiež Centrom excelentnosti SAV a UPJŠ, ktoré umožňuje spoločné využívanie experimentálnej techniky.
Názov univerzity/vysokej školy a fakulty: Prírodovedecká fakulta UPJŠ
Druh spolupráce (spoločné pracovisko alebo iné): Spoločné projekty a využívanie experimentálnej techniky
Začiatok spolupráce: 1999
Zameranie: Fyzika tuhých látok
Zhodnotenie: Dlhodobá spolupráca v oblasti štúdia mikroštruktúry a magnetických vlastností nanokryštalických kompozitných materiálov a systémov magnetických nanočastíc.
Názov univerzity/vysokej školy a fakulty: Prírodovedecká fakulta UPJŠ
Druh spolupráce (spoločné pracovisko alebo iné): Výskumno-vývojové centrum progresívnych materiálov pre súčasné a budúce aplikácie PROMATECH
Začiatok spolupráce: 2013
Zameranie: materiálový výskum zameraný na transfer vedeckých poznatkov do praxei
Zhodnotenie: V auguste r. 2013 začalo svoju činnosť Výskumno-vývojové centrum progresívnych materiálov pre súčasné a budúce aplikácie PROMATECH, projekt štrukturálnych fondov EU v hodnote 22 miliónov Eur. Koordinátorom VVC je SAV a partnermi 4 ústavy SAV: tri košické: ÚEF, ÚMV, ÚGt a ÚMMS, pobočka v Žiari nad Hronom. Ďalej sú partnermi projektu UPJŠ Košice a TUKE Košice. V rámci projektu bude v areáli SAV na Watsonovej v Košiciach vybudovaný nový technologický pavilón, zrekonštruované rozsiahle priestory Prírodovedeckej fakulty UPJŠ a vybudovaný technologický pavilón v Žiari nad Hronom. Ďalšia časť projektu je orientovaná na nákup prístrojov a zariadení pre materiálový výskum a vývoj. Projekt má tri hlavné úlohy a/zriadenie centra, b/ aplikovaný výskum a c/ zriadenie inštitúcie pre technologický transfer. V súčasnosti prebieha intenzívna stavebná činnosť, je nakúpená časť prístrojov, prebieha aplikovaný výskum aj za účasti novozískaných pracovníkov priamo pre tento projekt.
Názov univerzity/vysokej školy a fakulty: Fakulta elektrotechniky a informatiky TUKE
Druh spolupráce (spoločné pracovisko alebo iné): Spoločné využívanie experimentálnej aparatúry
Začiatok spolupráce: 2008
Zameranie: analýza obrazu
Zhodnotenie: Spoločný projekt APVV - Fakulta elektrotechniky a informatiky TUKE a Prírodovedecká fakulta UPJŠ sú spoluriešitelia.
Názov univerzity/vysokej školy a fakulty: Hutnícka fakulta TUKE
Druh spolupráce (spoločné pracovisko alebo iné): Spoločné využívanie experimentálnej techniky
Začiatok spolupráce: 1969
Zameranie: Materiálová fyzika
Zhodnotenie: Spolu s Ústavom materiálového výskumu SAV v Košiciach spoločné využívanie experimentálnej techniky.
6.2. Významné aplikácie výsledkov výskumu v spoločenskej praxi alebo vyriešenie problému pre štátnu alebo neziskovú inštitúciu
6.3. Iná činnosť využiteľná pre potreby spoločenskej praxe
7. Spolupráca s aplikačnou a hospodárskou sférou okrem aktivít uvedených v kap. 2, 3, 4
7.1. Spoločné pracoviská s aplikačnou sférou
7.2. Kontraktový – zmluvný výskum (vrátane zahraničných kontraktov)
7.3. Iná činnosť využiteľná pre potreby hospodárskej praxe
8. Aktivity pre Národnú radu SR, vládu SR, ústredné orgány štátnej správy SR a iné organizácie
8.1. Členstvo v poradných zboroch vlády SR, Národnej rady SR, ministerstiev SR, orgánoch EÚ, EP, NATO a pod.
Tabuľka 8a Členstvo v poradných zboroch Národnej rady SR, vlády SR, ministerstiev SR, orgánoch EÚ, EP, NATO a pod.
|Meno pracovníka |Názov orgánu |Funkcia |
| Doc. RNDr. Dušan Bruncko, CSc. |Výbor pre spoluprácu s CERN | člen |
| prof.doc. RNDr. Michal Hnatič, DrSc. |Výbor pre spoluprácu SR s SÚJV Dubna | člen |
| RNDr. Ivan Králik, CSc. |Výbor pre spoluprácu s CERN | člen |
| Prof. Ing. Karel Kudela, DrSc. |High Level Space Policy GRoup | alternujúci člen |
| |Výbor OSN COPUOS (Commission for Peaceful Use of Outer | Zástupca SR, focal point SR (national |
| |Space) |focal point on the long-term |
| | |sustainability of outer space |
| | |activities), člen expertnej skupiny C |
| | |Space Weather |
| Prof. RNDr. Peter Samuely, DrSc. |Hodnotiteľská komisia MŠVVaŠ pre zaraďovanie publikácií | člen |
| |Hodnotiaca komisia pre hodnotenie činnosti organizácií | člen |
| |vykonávajúcich výskum a vývoj pri Ministerstve školstva, | |
| |vedy, výskum a športu SR | |
| RNDr. Ladislav Šándor, CSc. |Výbor pre spoluprácu SR s CERN | podpredseda, koordinátor slovenských |
| | |aktivít v projekte ALICE na LHC v CERN |
| |Finančný výbor projektu ALICE v CERN, Ženeva, Švajčiarsko | zástupca SR |
8.2. Expertízna činnosť a iné služby pre štátnu správu a samosprávy
Názov expertízy: predseda komisie pre kvalifikačné vzdelávanie učiteľov informatiky
Adresát expertízy: Ústav informatiky UPJŠ
Spracoval: Doc. Ing. Zoltán Tomori, CSc.
8.3. Členstvo v radách štátnych programov a podprogramov ŠPVV a ŠO
Tabuľka 8b Členstvo v radách štátnych programov a podprogramov ŠPVV a ŠO
|Meno pracovníka |Názov orgánu |Funkcia |
| prof.doc. RNDr. Michal Hnatič, DrSc. |Pracovná skupina APVV pre matematiku, fyziku a informatiku| člen |
| prof. RNDr. Peter Samuely, DrSc. |Rada APVV pre prírodné vedy | predseda rady |
| RNDr. Peter Skyba, DrSc. |Pracovná skupina APVV pre matematiku, fyziku a informatiku| člen |
8.4. Prehľad aktuálnych spoločenských problémov, ktoré riešilo pracovisko v spolupráci s Kanceláriou prezidenta SR, s vládnymi a parlamentnými orgánmi alebo pre ich potrebu
9. Vedecko-organizačné a popularizačné aktivity
9.1.Vedecko-popularizačná činnosť
9.1.1. Najvýznamnejšia vedecko-popularizačná činnosť pracovníkov organizácie SAV
Tabuľka 9a Vedecko-popularizačná činnosť pracovníkov organizácie SAV
|Meno |Spoluautori |Typ1 |Názov |Miesto zverejnenia |Dátum alebo počet za|
| | | | | |rok |
|Ing. Ján Baláž, PhD. | |PB | Rosetta - prvýkrát v | Seminár "No Gravity", |4.10.2014 |
| | | |histórii: Ako pristáť na |Žilinská univerzita | |
| | | |kométe ? | | |
|Ing. Ján Baláž, PhD. | |TV | Úspešná misia | TV TA3 |12.11.2014 |
|Ing. Ján Baláž, PhD. | |TV | Víkendové rozhovory | TV REGION, |16.3.2014 |
| | | | | |
| | | | |ikendove-rozhovory-16-03-20| |
| | | | |14-jan-balaz-oddelenie-kozm| |
| | | | |ickej-fyziky-ustavu-experim| |
| | | | |entalnej-fyziky-sav-v-kosic| |
| | | | |iach | |
|Ing. Ján Baláž, PhD. | Diana Murdzíková |TV | Modul sondy Rosetta | Správy RTVS |12.11.2014 |
| | | |pristál na kométe | | |
|Ing. Ján Baláž, PhD. | J.Svoreň, S. Lažo, Z. |TV | Misia Rosetta | Hlavné správy STV o 19:00 |11.6.2014 |
| |Ratkovská | | |/ | |
| | | | | |
| | | | |a/program/detail/4173/sprav| |
| | | | |y-rtvs/archiv?date=11.06.20| |
| | | | |14 | |
|Ing. Ján Baláž, PhD. | Ján Mečiar |RO | Spektrum - Veda a Technika| RTVS - Rádio Slovensko / |19.8.2014 |
| | | |(Rosetta) | |
| | | | |anok/veda-a-technika/spektr| |
| | | | |um-2-8-5 | |
|Ing. Ján Baláž, PhD. | Jozef Demeter |TV | Pristaneme na kométe | Správy TV Markíza |3.11.2014 |
|Ing. Ján Baláž, PhD. | Jozef Demeter |TV | Pristátie na kométe | Správy TV Markíza |12.11.2014 |
|Ing. Ján Baláž, PhD. | Marta Jančkárová, |TV | Modul Philae má na kométe | RTVS - Správy a komentáre |13.11.2014 |
| |Alexandra Kazlovová | |problémy | | |
|Ing. Ján Baláž, PhD. | Miroslav Vajs |TL | Ako osedlať kométu | Pravda - víkendová príloha|29.11.2014 |
|Ing. Ján Baláž, PhD. | Miroslav Vajs, Pravda |TL | K prestížnej vesmírnej | Pravda |21.1.2014 |
| | | |misii Rosetta prispeli aj | |
| | | |Slováci |/clanok/305899-k-prestiznej| |
| | | | |-vesmirnej-misii-rosetta-pr| |
| | | | |ispeli-aj-slovaci/ | |
|Ing. Ján Baláž, PhD. | Radka Minarechová |IN | Slovakia's part in Rosetta| The Slovak Spectacor |6.10.2014 |
| | | |project | | |
|Ing. Ján Baláž, PhD. | Stano Lažo, Zuzana |RO | V novembri pristane sonda | RTVS - Regina; Žurnál |11.6.2014 |
| |Ratkovská, Martina | |Rosetta na jednej z |Rádia Regina o 12:00 | |
| |Bodnárová | |vesmírnych komét | | |
|Ing. Ján Baláž, PhD. | Štefan Hríb, Juraj |TV | "Pristáli sme na kométe" | STV2 |20.11.2014 |
| |Tóth, Juraj Petrovič | |Diskusná relácia "Pod | |
| | | |lampou" |a/archiv/137/53134 | |
|Ing. Ján Baláž, PhD. | Tomáš Prokopčák |TL | Európska sonda Rosetta | SME |6.8.2014 |
| | | |chytila svoju kométu | |
| | | | |6/europska-sonda-rosetta-ch| |
| | | | |ytila-svoju-kometu.html | |
|Ing. Ján Baláž, PhD. | Tomáš Prokopčák |RO | Rozhovor o misii Rosetta | RTVS-Rádio FM, relácia |10.7.2014 |
| | | | |Tech-FM, | |
| | | | | |
| | | | |iofm/tech_fm-komety-1072014| |
| | | | |/ | |
|Ing. Ján Baláž, PhD. | Vladimír Lichvár |TV | Rozhovor: Rosetta je už | TA3 / 24 Hodín vo Svete, |7.8.2014 |
| | | |druhý deň na obežnej dráhe | |
| | | |kométy |044900/rosetta-je-uz-druhy-| |
| | | | |den-na-obeznej-drahe-komety| |
| | | | |.html | |
|RNDr. Pavol Bobík, PhD | |PB | Slovenska cesta do | Moldava nad Bodvou |5.5.2014 |
| | | |mikrokozmu, Kozmické | | |
| | | |žiarenie & UHECR JEM-EUSO | | |
|Doc. RNDr. Dušan Bruncko, CSc. | - |PB | Higgsov bozon - nasli sme | Presovska univerzita, |12.11.2014 |
| | | |ho? Ak ano, co dalej? |Presov | |
|Doc. RNDr. Dušan Bruncko, CSc. | - |PB | Higgsov bozon - nasli sme | Slovenske technicke |18.9.2014 |
| | | |ho? Ak ano, co dalej? |muzeum, Kosice, Hlavna 88 | |
|Doc. RNDr. Dušan Bruncko, CSc. | - |iné | Konzultant v ramci sutaze | mal som na starosti jednu |8.1.2014 |
| | | |Beam Line |skupinu stredoskolskych | |
| | | | |studentov | |
|Doc. RNDr. Dušan Bruncko, CSc. | - |TL | rozhovor pre Hospodarske | Hospodarske noviny, |28.8.2014 |
| | | |noviny |28.8.2014, | |
| | | | | |
| | | | |mika-a-firmy-117/nasli-sme-| |
| | | | |boziu-casticu-teraz-ju-skum| |
| | | | |ame-628391 | |
|RNDr. Slavomír Gabáni, PhD. | |EX | Deň otvorených dverí ÚEF | Steel Park Košice |13.11.2014 |
| | | |SAV | | |
|RNDr. Slavomír Gabáni, PhD. | |PB | Fyzika vákua | Cirkevné gymnázium v |14.11.2014 |
| | | | |Humennom | |
|RNDr. Slavomír Gabáni, PhD. | |iné | Noc výskumníka | OC Optima Košice |26.9.2014 |
|Ing. Emil Gažo | |PB | Vedecká kaviareň - Veľký | Výmenník Obrody, Košice |25.2.2014 |
| | | |hadrónový urýchľovač LHC , | | |
| | | |najväčšia "chladnička" na | | |
| | | |svete | | |
|Ing. Emil Gažo | |PB | Zimomravenie , | Steel Park kreatívna |8.3.2014 |
| | | |Supravodivosť a levitujúci |fabrika 10:00-17:00, Košice| |
| | | |vláčik, vákuové experimenty| | |
|RNDr. Jozef Kačmarčík, PhD | |PB | Popularizačná prednáška s | Astronomická výmena |9.7.2014 |
| | | |demonštračnými |skúseností, Stará Lesná | |
| | | |experimentami - | | |
| | | |Supravodivosť a vákuum | | |
|RNDr. Jozef Kačmarčík, PhD | |PB | Popularizačná prednáška s | ZŠ Spišské Podhradie |12.2.2014 |
| | | |demonštračnými | | |
| | | |experimentami - Vákuum | | |
|RNDr. Eduard Kladiva, CSc. | |TL | Slovenská cesta do | Zajtrajšie noviny, Košice |4.9.2014 |
| | | |mikrokozmu (CERN – 60 rokov| | |
| | | |európskej integrácie v | | |
| | | |časticovej fyzike) | | |
|RNDr. Eduard Kladiva, CSc. | |iné | výstava „Slovenská cesta | Humenné, Vihorlatská |18.11.2014 |
| | | |do mikrokozmu“, 18.11. do |hvezdáreň | |
| | | |19.12.2014 | | |
|RNDr. Eduard Kladiva, CSc. | |iné | výstava „Slovenská cesta | Rožňava, Centrum voľného |2.6.2014 |
| | | |do mikrokozmu“, 2. 6. - 20 |času, Radnica | |
| | | |.6. 2014 | | |
|RNDr. Eduard Kladiva, CSc. | |iné | výstava „Slovenská cesta | Lučenec, Novohradské |6.2.2014 |
| | | |do mikrokozmu“, 6. 2. – 22.|múzeum a galéria | |
| | | |2. 2014 | | |
|RNDr. Eduard Kladiva, CSc. | |iné | výstava „Slovenská cesta | Košice, Slovenské |8.9.2014 |
| | | |do mikrokozmu“, 8. 9. – 26.|technické múzeum | |
| | | |9. 2014, k príležitosti 60.| | |
| | | |výročia vzniku CERN | | |
|RNDr. Eduard Kladiva, CSc. | |iné | výstava „Slovenská cesta | Prešov, Hvezdáreň a |8.10.2014 |
| | | |do mikrokozmu“, 8.10. – |planetárium | |
| | | |31.10.2014 | | |
|RNDr. Ivan Králik, CSc. | |PB | Ako sme hľadali | Prešovská univerzita, |11.11.2014 |
| | | |kvarkovo-gluónovú plazmu |Prešov | |
|RNDr. Ivan Králik, CSc. | |PB | Ako sme hľadali | Rožňava |5.6.2014 |
| | | |kvarkovo-gluónovú plazmu | | |
|RNDr. Ivan Králik, CSc. | |PB | Experiment ALICE na LHC | Prešovská univerzita, |12.11.2014 |
| | | | |Prešov | |
|RNDr. Ivan Králik, CSc. | |PB | Úvod do fyziky vysokých | Prešovská univerzita, |11.11.2014 |
| | | |energií |Prešov | |
|RNDr. Ivan Králik, CSc. | |PB | Veľký hadrónový urýchľovač| Prešovská univerzita, |11.11.2014 |
| | | |LHC v CERN-e |Prešov | |
|Prof. Ing. Karel Kudela, DrSc. | |PB | Katedra jadrovej fyziky, | PF UPJŠ Košice |3.12.2014 |
| | | |prof. J. Dubinský a | | |
| | | |oddelenie kozmickej fyziky | | |
| | | |ÚEF SAV Košice | | |
|Prof. Ing. Karel Kudela, DrSc. | |PB | Kozmické žiarenie, vysoké | Košice, vedecká kaviareň |28.10.2014 |
| | | |Tatry a Košice | | |
|Prof. Ing. Karel Kudela, DrSc. | |PB | Kozmický výskum na | Košice, Noc výskumníka, |26.9.2014 |
| | | |Slovensku a v Košiciach |OPTIMA | |
|Prof. RNDr. Peter Samuely, | |RO | Rozhovor Európska | Rádio Regina Košice |16.9.2014 |
|DrSc. | | |mikrokelvinová platforma, | | |
| | | |projekt pre Horizont 2020 | | |
|Prof. RNDr. Peter Samuely, | |RO | Rozhovor Projekt VVC | Rádio Regina Košice |12.9.2014 |
|DrSc. | | |Promatech a laboratóriá v | | |
| | | |Angleine Košice | | |
|Mgr. Pavol Szabó, CSc. | |PB | Čeky Point - talkshow | Čeky Point - FuGa, Košice |27.11.2014 |
| | | |Mariana Čekovského | | |
|Mgr. Pavol Szabó, CSc. | |iné | Deň SAV v Steel Parku | Steel Park, Košice |13.11.2014 |
|Mgr. Pavol Szabó, CSc. | |TV | Deň Von Neumanna- Maďarský| Duna TV |30.4.2014 |
| | | |deň v Steel Parku | | |
|Mgr. Pavol Szabó, CSc. | |PB | Deň Von Neumanna- Maďarský| Steel Park, Košice |28.4.2014 |
| | | |deň v Steel Parku | | |
|Mgr. Pavol Szabó, CSc. | |iné | Noc výskumníkov v | OC Optima, Košice |26.9.2014 |
| | | |Košiciach | | |
|Mgr. Pavol Szabó, CSc. | |TV | Rozhovor pre TV Naša o | TV Naša |23.9.2014 |
| | | |Noci výskumníkov v | | |
| | | |Košiciach | | |
|Mgr. Pavol Szabó, CSc. | |RO | Veda chce žiť - A tudomány| rádio Pátria |12.12.2014 |
| | | |élni akar | | |
|RNDr. Ladislav Šándor, CSc. | |PB | 22 years of Czech and | 18. konf. českých a |16.9.2014 |
| | | |Slovak membership at CERN |slovenských fyzikov Olomouc| |
|RNDr. Ladislav Šándor, CSc. | |PB | 60 rokov CERNu | Gymnázium Pezinok |16.6.2014 |
|RNDr. Ladislav Šándor, CSc. | |PB | 60 rokov CERNu | PF UPJŠ Košice |8.4.2014 |
|RNDr. Ladislav Šándor, CSc. | |PB | 60 rokov CERNu | Univerzita v Prešove |4.4.2014 |
|RNDr. Ladislav Šándor, CSc. | |PB | CERN - 60 rokov európskej | Hvezdáreň a planetárium |8.10.2014 |
| | | |integrácie v časticovej |Prešov | |
| | | |fyzike | | |
|RNDr. Ladislav Šándor, CSc. | |PB | CERN - 60 rokov európskej | Slovenské technické múzeum|26.9.2014 |
| | | |integrácie v časticovej |Košice | |
| | | |fyzike | | |
|RNDr. Ladislav Šándor, CSc. | |PB | Príhovor na vernisáži | Slovenské technické múzeum|9.9.2014 |
| | | |výstavy Slovenská cesta do |Košice | |
| | | |mikrokozmu | | |
|RNDr. Ladislav Šándor, CSc. | |PB | Vznik a história CERNu | Katedra fyziky Univerzity |11.11.2014 |
| | | | |v Prešove | |
|RNDr. Zuzana Vargaeštoková, PhD| |PB | Popularizačná prednáška s | Gymnázium sv. Cyrila a |14.11.2014 |
| | | |demonštračnými |Metoda, Humenné | |
| | | |experimentami - | | |
| | | |Supravodivosť | | |
|RNDr. Zuzana Vargaeštoková, PhD| |PB | Popularizačná prednáška s | Základná škola, Spišské |12.2.2014 |
| | | |demonštračnými |Podhradie | |
| | | |experimentami - | | |
| | | |Supravodivosť | | |
|RNDr. Zuzana Vargaeštoková, PhD| Z. Medvecká, V. |iné | Noc výskumníkov - Fyzika v| OC Optima Košice |26.9.2014 |
| |Hašková, M. Lacková | |kuchyni | | |
|RNDr. Pavol Bobík, PhD | |iné | Deň SAV v SteelParku | |1 |
|RNDr. Pavol Bobík, PhD | |iné | Noc výskumníkov 2014 | |1 |
| | | | | |
| | | | |k | |
|RNDr. Slavomír Gabáni, PhD. | |EX | Supravodivý levitujúci | Steel Park Košice |25 |
| | | |vláčik a vákuové | | |
| | | |experimenty | | |
|RNDr. Zuzana Gažová, CSc. | Zuzana Bednáriková, |iné | Noc výskumníka | uef.sk |1 |
| |Dagmar Sedláková, | | | | |
| |Slavomíra Poniková | | | | |
|RNDr. Eduard Kladiva, CSc. | |IN | Facebook - Mikrokozmos | |223 |
| | | | | |
| | | | |krokozmos | |
|RNDr. Blahoslav Pastirčák, CSc.| Bobik, Mizov, Putis, |iné | Den otvorenych dveri | Kosice |1 |
| |Slivka | | | | |
|RNDr. Blahoslav Pastirčák, CSc.| Bobik, Putis, Mizov, |iné | Noc vyskumnika | Kosice |1 |
| |Slivka | | | | |
|RNDr. Marián Putiš, PhD. | |iné | Deň SAV v SteelParku | |1 |
|RNDr. Marián Putiš, PhD. | |iné | Noc výskumníkov | |1 |
| | | | | |
| | | | |k/ | |
|Doc. Ing. Zoltán Tomori, CSc. | Eva Valušová, Igor Hrmo|iné | Noc výskumníka - | Košice, OC Optima |1 |
| | | |predvádzanie exponátu | | |
|Doc. Ing. Zoltán Tomori, CSc. | Peter Vanko |iné | Piknik Naukowy | Varšava, Poľsko |1 |
|RNDr. Mária Zentková, CSc. | |iné | Vedecky brloh | 1. Vymenik Obrody , Kosice|12 |
1 PB - prednáška/beseda, TL - tlač, TV - televízia, RO - rozhlas, IN - internet, EX - exkurzia, PU - publikácia, MM - multimédiá, DO - dokumentárny film
9.1.2. Súhrnné počty vedecko-popularizačných činností organizácie SAV
Tabuľka 9b Súhrnné počty vedecko-popularizačných činností organizácie SAV
|Typ |Počet |Typ |Počet |Typ |Počet |
|prednášky/besedy |29 |tlač |5 |TV |11 |
|rozhlas |6 |internet |2 |exkurzie |2 |
|publikácie |6 |multimediálne nosiče |4 |dokumentárne filmy |0 |
|iné |20 | | | | |
9.2. Vedecko-organizačná činnosť
Tabuľka 9c Vedecko-organizačná činnosť
|Názov podujatia |Domáca/ medzinárodná |Miesto |Dátum konania |Počet účastníkov |
| NANOFLUID IX |medzinárodná |Stará Lesná, Hotel Academia|29.09.-02.10.2014 |40 |
| XVI. SMALL TRIANGLE MEETING |medzinárodná |Humenné - Ptičie |05.10.-08.10.2014 |32 |
9.3. Účasť na výstavách
9.4. Účasť v programových a organizačných výboroch národných konferencií
Tabuľka 9d Programové a organizačné výbory národných konferencií
|Typ výboru |Programový |Organizačný |Programový i organizačný |
|Počet členstiev |0 |0 |0 |
9.5. Členstvo v redakčných radách časopisov
Prof. Ing. Marián Antalík, DrSc.
Chemical papers (funkcia: člen)
Ing. Pavel Diko, DrSc.
ISRN Condensed Matter Physics (funkcia: Editorial board )
Doc. RNDr. Karol Flachbart, DrSc.
Acta Electrotechnica et Informatica (funkcia: člen redakčnej rady )
Prof. Ing. Karel Kudela, DrSc.
Acta Electrotechnica et Informatica (funkcia: člen redakčnej rady )
Acta Universitatis Carolinae (funkcia: člen redakčnej rady)
Dataset Papers in Geosciences, Geophysics (funkcia: člen Editorial Board)
Indian Journal of Radio and Space Physics (funkcia: člen redakčnej rady)
The Open Aerospace Enginnering Journal (funkcia: člen Editorial Advisory Board)
The Scientific World Journal, Geophysics (funkcia: člen Editorial Board)
MUDr. Andrey Musatov, CSc.
Chemical Papers (funkcia: •Člen medzinárodného poradného výboru)
Prof. RNDr. Peter Samuely, DrSc.
Physica C (funkcia: člen Advisory board)
RNDr. Peter Skyba, DrSc.
Acta Physica Slovaca (funkcia: člen)
RNDr. Ivan Škorvánek, CSc.
ISRN Nanotechnology (funkcia: člen editorial board)
9.6. Činnosť v domácich vedeckých spoločnostiach
Prof. Ing. Marián Antalík, DrSc.
Slovenská biofyzikálna spoločnosť (funkcia: člen)
Slovenská spoločnosť pre biochémiu a molekulárnu biológiu (funkcia: člen)
RNDr. Diana Fedunová, PhD.
Slovenská biofyzikálna spoločnosť (funkcia: člen)
Slovenská spoločnosť pre biochémiu a molekulárnu biológiu (funkcia: člen)
RNDr. Slavomír Gabáni, PhD.
Slovenská fyzikálna spoločnosť (funkcia: člen)
RNDr. Zuzana Gažová, CSc.
Slovenská biofyzikálna spoločnosť (funkcia: člen)
Slovenská spoločnosť pre biochémiu a molekulárnu biológiu (funkcia: člen)
Prof. Ing. Karel Kudela, DrSc.
Vedecká rada Astronomického ústavu SAV (funkcia: člen)
RNDr. Jozef Marek, PhD.
Slovenská biofyzikálna spoločnosť (funkcia: člen)
Prof. RNDr. Marián Reiffers, DrSc.
Národný komitét IUPAP (funkcia: člen)
Slovenská fyzikálna spoločnosť (funkcia: predseda)
RNDr. Peter Skyba, DrSc.
Slovenská fyzikálna spoločnosť (funkcia: člen)
RNDr. Marián Slivka, CSc.
JSMF (funkcia: člen)
RNDr. Katarína Šipošová, PhD.
Slovenská biofyzikálna spoločnosť (funkcia: člen)
Slovenská spoločnosť pre biochémiu a molekulárnu biológiu (funkcia: člen)
RNDr. Ivan Škorvánek, CSc.
Odborná skupina Magnetizmu pri Slovenskej Fyzikálnej Spoločnosti (funkcia: Vedúci)
9.7. Iné dôležité informácie o vedecko-organizačných a popularizačných aktivitách
Noc výskumníkov 2014
V rámci najväčšieho popularizačného podujatia zameraného na vedu a výskum na Slovensku Noc výskumníkov pracovníci ÚEF SAV v Košiciach zorganizovali a koordinovali vedeckú show košických ústavov SAV a miestnych univerzít. Akcia sa uskutočnila dňa 26. septembra 2014 v Obchodnom centre Optima v Košiciach. Na akcii ÚEF reprezentovalo 15 exponátov a 25 výskumníkov. V rámci Noci výskumníkov v spolupráci so spoločnosťou Cofilm sa realizoval i kolotoč 10 vedecko-popularizačných prednášok v kinosále (pre 80 ľudí) multikina Cinemax.
Deň SAV v Steel Parku
V rámci Týždňa vedy a techniky EÚ na Slovensku sa 13. novembra 2014 uskutočnil Deň SAV v Steel Parku, kde priamo vedci – výrobcovia jednotlivých vedecko-popularizačných exponátov predstavili návštevníkom Steel Park. Akciu organizoval ÚEF (15 výskumníkov) v spolupráci s NbÚ (5 výskumníkov) s celkovým počtom návštevníkov okolo 400 (dominantne študentov gymnázií a stredných škôl z okolia Košíc). O akcii informovali lokálne médiá a TV Markíza.
10. Činnosť knižnično-informačného pracoviska
10.1. Knižničný fond
Tabuľka 10a Knižničný fond
|Knižničné jednotky spolu | 4038 |
|z toho |knihy a zviazané periodiká |3110 |
| |audiovizuálne dokumenty |0 |
| |elektronické dokumenty (vrátane digitálnych) |5 |
| |mikroformy |0 |
| |iné špeciálne dokumenty - dizertácie, výskumné správy |23 |
|Počet titulov dochádzajúcich periodík |0 |
| z toho zahraničné periodiká |0 |
|Ročný prírastok knižničných jednotiek |27 |
|v tom |kúpou |26 |
| |darom |1 |
| |výmenou |0 |
| |bezodplatným prevodom |0 |
|Úbytky knižničných jednotiek |0 |
|Knižničné jednotky spracované automatizovane |40 |
10.2. Výpožičky a služby
Tabuľka 10b Výpožičky a služby
|Výpožičky spolu |1260 |
|z toho |odborná literatúra pre dospelých |1210 |
| |výpožičky periodík |20 |
| |prezenčné výpožičky |30 |
|MVS iným knižniciam |0 |
|MVS z iných knižníc |58 |
|MMVS iným knižniciam |0 |
|MMVS z iných knižníc |0 |
|Počet vypracovaných bibliografií |0 |
|Počet vypracovaných rešerší |0 |
10.3. Používatelia
Tabuľka 10c Užívatelia
|Registrovaní používatelia |120 |
|Návštevníci knižnice spolu (bez návštevníkov podujatí) |450 |
10.4. Iné údaje
Tabuľka 10d Iné údaje
|On-line katalóg knižnice na internete ( 1=áno, 0=nie) |0 |
|Náklady na nákup knižničného fondu v € |3855,86 |
10.5. Iné informácie o knižničnej činnosti
11. Aktivity v orgánoch SAV
11.1. Členstvo vo Výbore Snemu SAV
11.2. Členstvo v Predsedníctve SAV a vo Vedeckej rade SAV
11.3. Členstvo vo vedeckých kolégiách SAV
Prof. Ing. Marián Antalík, DrSc.
- VK SAV pre chemické vedy (Podpredseda kolégia SAV)
Ing. Pavel Diko, DrSc.
- VK SAV pre elektroniku, materiálový výskum a technológie (člen kolégia)
Doc. RNDr. Karol Flachbart, DrSc.
- VK SAV pre matematiku, fyziku a informatiku (člen komisie)
RNDr. Zuzana Gažová, CSc.
- VK SAV pre matematiku, fyziku a informatiku (člen)
Doc. RNDr. Peter Kopčanský, CSc.
- VK SAV pre matematiku, fyziku a informatiku (podpredseda kolégia)
Prof. Ing. Karel Kudela, DrSc.
- VK SAV pre vedy o Zemi a vesmíre (člen kolégia)
11.4. Členstvo v komisiách SAV
Doc. RNDr. Karol Flachbart, DrSc.
- Komisia SAV pre zahraničné styky (člen komisie)
Ing. Viktor Kočan
- Komisia SAV pre informačné a komunikačné technológie (člen)
Prof. Ing. Karel Kudela, DrSc.
- Komisia SAV pre vesmírne aktivity (člen)
Mgr. Pavol Szabó, CSc.
- Komisia SAV pre propagáciu a médiá (člen komisie)
RNDr. Ivan Škorvánek, CSc.
- Komisia SAV pre vyhodnocovanie medzinárodných projektov (člen)
11.5. Členstvo v orgánoch VEGA
RNDr. Kornel Csach, CSc.
- Komisia VEGA č. 7 pre strojárstvo a príbuzné odbory informačných a komunikačných technológií a materiálové inžinierstvo (člen komisie)
RNDr. Marián Jurčišin, PhD.
- Komisia VEGA č.1 (člen)
Doc. RNDr. Peter Kopčanský, CSc.
- Komisia VEGA č. 1 pre matematické vedy, počítačové a informatické vedy a fyzikálne vedy (člen)
RNDr. Ivan Škorvánek, CSc.
- Komisia VEGA č. 7 (člen komisie)
RNDr. Milan Timko, CSc.
- Komisia VEGA č. 5 pre elektrotechniku, automatizáciu a riadiace systémy a príbuzné odbory informačných a komunikačných technológií (člen)
12. Hospodárenie organizácie
12.1. Výdavky RO SAV
Tabuľka 12a Výdavky RO SAV (v €)
|V ý d a v k y |Skutočnosť k |v tom: |
| |31.12.2014 spolu | |
| | |zo ŠR |z toho: |z mimorozp. zdrojov |z toho: |
| | | | ŠF EÚ vr. | |ŠF EÚ vr. |
| | | |spolufinan.zo ŠR| |spolufinan.zo ŠR |
|Výdavky spolu | 5374244 |4689769 |2625706 |684475 | 76790 |
| Bežné výdavky |3324888 | 2786013 |757317 | 538875 |71245 |
| v tom: | | | | | |
|mzdy (610) |1396871 |1260838 |172904 |136033 |26573 |
|poistné a príspevok do poisťovní (620) | 508000 |453795 |76122 |54205 |37632 |
|tovary a služby (630) |1239341 |943548 |485751 |295793 | 7040 |
|z toho: časopisy | | | | | |
|VEGA projekty | 179817 |179817 | | | |
|MVTS projekty | 68400 | 68400 | | | |
|CE | 20211 | | | | |
|vedecká výchova | 5800 |5800 | | | |
|bežné transfery (640) |180676 |127832 |22540 |52844 | |
|z toho: štipendiá | 113263 |113263 | 22540 | | |
|transfery partnerom projektov | 62814 |11178 |11178 |51636 | |
| Kapitálové výdavky | 2049356 |1903756 | 1868389 |145600 |5545 |
| v tom: | | | | | |
|obstarávanie kapitálových aktív | 2049356 |1903756 |1868389 |145600 |5545 |
|kapitálové transfery | | | | | |
|z toho: transfery partnerom projektov | | | | | |
12.2. Príjmy RO SAV
Tabuľka 12b Príjmy RO SAV (v €)
|P r í j m y |Skutočnosť k |v tom: |
| |31.12.2014 spolu | |
| | |rozpočtové |z mimorozp. |
| | | |zdrojov |
|Príjmy spolu |726798 |42395 |684403 |
| Nedaňové príjmy |42323 |42323 | |
| v tom: | | | |
|príjmy z prenájmu | | | |
|príjmy z predaja výrobkov a služieb |42323 |42323 | |
|iné | | | |
| Granty a transfery (mimo zdroja 111) |684475 | | |
| v tom: | | | |
| tuzemské |633516 | |633516 |
| z toho: APVV | 390115 | | 390115 |
| iné | 243401 | | |
|zahraničné | 50959 | |50959 |
|z toho: projekty rámcového programu EÚ | 47959 | | 47959 |
|iné | 3000 | | 3000 |
12.1. Výdavky PO SAV
Tabuľka 12a Výdavky PO SAV (v €)
|V ý d a v k y |Skutočnosť k |v tom: |
| |31.12.2014 spolu | |
| | |zo ŠR od zriaďovateľa|z vlastných zdrojov |z iných zdrojov |z toho: |
| | | | | |ŠF EÚ |
|Výdavky spolu | | | | | |
| Bežné výdavky | | | | | |
| v tom: | | | | | |
|mzdy (610) | | | | | |
|poistné a príspevok do poisťovní (620) | | | | | |
|tovary a služby (630) | | | | | |
|z toho: časopisy | | | | | |
|VEGA projekty | | | | | |
|MVTS projekty | | | | | |
|CE | | | | | |
|vedecká výchova | | | | | |
|bežné transfery (640) | | | | | |
|z toho: štipendiá | | | | | |
|transfery partnerom projektov | | | | | |
| Kapitálové výdavky | | | | | |
| v tom: | | | | | |
|obstarávanie kapitálových aktív | | | | | |
|kapitálové transfery | | | | | |
|z toho: transfery partnerom projektov | | | | | |
12.2. Príjmy PO SAV
Tabuľka 12b Príjmy PO SAV (v €)
|P r í j m y |Skutočnosť k |v tom: |
| |31.12.2014 spolu | |
| | |rozpočtové |z mimorozp. |
| | | |zdrojov |
|Príjmy spolu | | | |
| Nedaňové príjmy | | | |
| v tom: | | | |
|príjmy z prenájmu | | | |
|príjmy z predaja výrobkov a služieb | | | |
|iné | | | |
| Granty a transfery (mimo zdroja 111) | | | |
| v tom: | | | |
| tuzemské | | | |
| z toho: APVV | | | |
| iné | | | |
|zahraničné | | | |
|z toho: projekty rámcového programu EÚ | | | |
|iné | | | |
13. Nadácie a fondy pri organizácii SAV
14. Iné významné činnosti organizácie SAV
15. Vyznamenania, ocenenia a ceny udelené pracovníkom organizácie v roku 2014
15.1. Domáce ocenenia
15.1.1. Ocenenia SAV
Diko Pavel
Zlatá medaila UEF
Oceňovateľ: Vedecká rada UEF
Opis: Pri priležitosti 45 výročia založenia ÚEF SAV.
Kolektív pracovníkov Oddelenia subjadrovej fyziky Ústavu experimentálnej fyziky SAV v zložení: Ing. Jaroslav Bán, CSc., doc. RNDr. Dušan Bruncko, CSc., RNDr. Eduard Kladiva, CSc., RNDr. Michal Seman, CSc., RNDr. Pavol Stríženec, CSc
Cena SAV
Oceňovateľ: P SAV
Opis: Cena kolektívu pracovníkov Oddelenia subjadrovej fyziky Ústavu experimentálnej fyziky SAV v zložení:Ing. Jaroslav Bán, CSc.,doc. RNDr. Dušan Bruncko, CSc.,RNDr. Eduard Kladiva, CSc.,RNDr. Michal Seman, CSc.,RNDr. Pavol Stríženec, CSc.za výsledky vedeckovýskumnej práce v rámci medzinárodnej vedeckej spolupráce CERN zameranej na objavenie a meranie vlastnosti častice konzistentnej s Higgsovým bozónom.
RNDr. Mária Zentková, CSc.RNDr. Matuš Mihalik, PhD.Ing. Emil Gažo, RNDr. Milan Timko, CSc., Doc. Ing. Zoltán Tomori,CSC., Mgr. Pavol Szabó, CSc., RNDr. Marián Mihalik, CSc., RNDr. Jozef Kováč, CSc., Bc. Katarína Paulovičová.
Cena SAV za popularizáciu vedy
Oceňovateľ: PSAV
Opis: Cena SAV za popularizáciu vedy kolektívu pracovníkov Ústavu experimentálnej fyziky SAV a Neurobiologického ústavu SAV v zložení:RNDr. Mária Zentková, CSc.RNDr. Matuš Mihalik, PhD.Ing. Emil GažoRNDr. Milan Timko, CSc.Doc. Ing. Zoltán Tomori,CSC.Mgr. Pavol Szabo,CSc.RNDr. Marián Mihalik, CSc.RNDr. Jozef Kováč, CSc., Bc. Katarína Paulovičová. za význanmý príspevok pri vybudovaní interaktívneho zábavného vedecko-technologického centra Steel Park v Košiciach.
15.1.2. Iné domáce ocenenia
D.Bruncko, T. Blažek, E. Kladiva, P. Střiženec, I. Sykora, S. Tokár, T. Zenis
Prémia za výnimočný vedecký ohlas na jedno dielo za rok 2013
Oceňovateľ: Literárny fond SR, Bratislava
Opis:Pre kolektív pracovníkov Ústavu experimentálnej fyziky SAV, Košice a pracovníkov Fakulty matematiky, fyziky a informatiky UK Bratislava za prácu „Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC“
Šipošová Katarína
Cena Slovenskej biofyzikálnej spoločnosti pre mladého vedeckého pracovníka
Oceňovateľ: Slovenská Biofyzikálna Spoločnosť
15.2. Medzinárodné ocenenia
Kudela Karel
Top 10 Reviewers for Advances in Space Research in 2014
Oceňovateľ: Advances in Space Research - The Official Journal of the Committee on Space Research (COSPAR)
Opis: Ocenenie bolo udelené 10 najlepším recenzentom časopisu Advances in Space Research v roku 2014.
16. Poskytovanie informácií v súlade so zákonom č. 211/2000 Z. z. o slobodnom prístupe k informáciám v znení neskorších predpisov (Zákon o slobode informácií)
17. Problémy a podnety pre činnosť SAV
Správu o činnosti organizácie SAV spracoval(i):
Doc. RNDr. Karol Flachbart, DrSc., 055/7922200
Mgr. Pavol Szabó, CSc., 055/ 7922306, 7922310
Riaditeľ organizácie SAV:
|.................................................................. |
|Doc. RNDr. Karol Flachbart, DrSc. |
Prílohy
Príloha A
Zoznam zamestnancov a doktorandov organizácie k 31.12.2014
Zoznam zamestnancov podľa štruktúry (nadväzne na údaje v Tabuľke 1a)
| |Meno s titulmi |Úväzok |Ročný prepočítaný úväzok |
| | |(v %) | |
| Vedúci vedeckí pracovníci DrSc. |
|1. | Prof. Ing. Marián Antalík, DrSc. |50 |0.50 |
|2. | Ing. Pavel Diko, DrSc. |100 |1.00 |
|3. | RNDr. Pavol Farkašovský, DrSc. |100 |1.00 |
|4. | Doc. RNDr. Karol Flachbart, DrSc. |100 |1.00 |
|5. | prof.doc. RNDr. Michal Hnatič, DrSc. |50 |0.10 |
|6. | Prof. Ing. Karel Kudela, DrSc. |100 |1.00 |
|7. | Prof. RNDr. Marián Reiffers, DrSc. |10 |0.10 |
|8. | Prof. RNDr. Peter Samuely, DrSc. |100 |1.00 |
|9. | RNDr. Marián Sedlák, DrSc. |100 |1.00 |
|10. | RNDr. Peter Skyba, DrSc. |100 |1.00 |
| Vedúci vedeckí pracovníci CSc., PhD. |
|1. | RNDr. Jaroslav Antoš, CSc. |100 |1.00 |
|2. | Doc. RNDr. Dušan Bruncko, CSc. |100 |1.00 |
|3. | RNDr. Kornel Csach, CSc. |100 |1.00 |
|4. | RNDr. Jozef Ferencei, CSc. |100 |0.00 |
|5. | Doc. RNDr. Peter Kopčanský, CSc. |100 |1.00 |
|6. | RNDr. Jozef Kováč, CSc. |100 |1.00 |
|7. | RNDr. Marián Mihalik, CSc. |100 |1.00 |
|8. | RNDr. Ladislav Šándor, CSc. |30 |0.30 |
|9. | RNDr. Ivan Škorvánek, CSc. |100 |1.00 |
|10. | RNDr. Milan Timko, CSc. |100 |1.00 |
|11. | doc.,RNDr. Jozef Urban, CSc. |1 |0.01 |
| Samostatní vedeckí pracovníci |
|1. | Ing. Jaroslava Bágeľová, CSc. |32 |0.39 |
|2. | Ing. Ján Baláž, PhD. |100 |1.00 |
|3. | Ing. Jaroslav Bán, CSc. |51 |0.51 |
|4. | RNDr. Ivan Baťko, CSc. |100 |1.00 |
|5. | RNDr. Pavol Bobík, PhD |100 |1.00 |
|6. | RNDr. Hana Čenčariková, PhD |100 |1.00 |
|7. | RNDr. Diana Fedunová, PhD. |100 |1.00 |
|8. | RNDr. Slavomír Gabáni, PhD. |100 |1.00 |
|9. | RNDr. Zuzana Gažová, CSc. |100 |1.00 |
|10. | RNDr. Marián Jurčišin, PhD. |100 |1.00 |
|11. | RNDr. Alena Juríková, CSc. |100 |1.00 |
|12. | RNDr. Jozef Kačmarčík, PhD |100 |1.00 |
|13. | RNDr. Viktor Kavečanský, CSc. |100 |1.00 |
|14. | Ing. Martina Koneracká, CSc. |100 |1.00 |
|15. | RNDr. Tibor Kožár, CSc. |12 |0.12 |
|16. | RNDr. Ivan Králik, CSc. |100 |1.00 |
|17. | RNDr. Martin Kupka, CSc. |100 |1.00 |
|18. | Prof. RNDr. Vladimír Lisý, DrSc. |10 |0.10 |
|19. | RNDr. Jozef Marcin, PhD |100 |1.00 |
|20. | Ing. Jozef Miškuf, CSc. |35 |0.35 |
|21. | MUDr. Andrey Musatov, CSc. |100 |1.00 |
|22. | RNDr. Ján Nemčík, CSc. |100 |1.00 |
|23. | RNDr. Blahoslav Pastirčák, CSc. |100 |1.00 |
|24. | RNDr. Richard Pinčák, PhD. |100 |1.00 |
|25. | RNDr. Gabriel Pristáš, PhD. |100 |1.00 |
|26. | RNDr. Michal Pudlák, CSc. |100 |1.00 |
|27. | RNDr. Marián Slivka, CSc. |5 |0.05 |
|28. | RNDr. Milan Stehlík, DrSc. |5 |0.05 |
|29. | RNDr. Pavol Stríženec, CSc. |100 |1.00 |
|30. | Mgr. Pavol Szabó, CSc. |100 |1.00 |
|31. | RNDr. Natália Tomašovičová, CSc. |100 |1.00 |
|32. | Doc. RNDr. Ladislav Tomčo, PhD. |7 |0.07 |
|33. | Doc. Ing. Zoltán Tomori, CSc. |100 |1.00 |
|34. | RNDr. Zuzana Vargaeštoková, PhD |100 |1.00 |
|35. | Ing. Vlasta Závišová, PhD. |100 |1.00 |
|36. | RNDr. Mária Zentková, CSc. |100 |1.00 |
|37. | Ing. Katarína Zmorayová, PhD |100 |1.00 |
| Vedeckí pracovníci |
|1. | Mgr. Iryna Antal, PhD. |100 |1.00 |
|2. | Mgr. Vitaliy Antal, PhD. |100 |1.00 |
|3. | RNDr. Andrea Antošová, PhD. |100 |0.66 |
|4. | RNDr. Marianna Baťková, PhD. |100 |1.00 |
|5. | RNDr. Marcel Človečko, PhD. |100 |1.00 |
|6. | RNDr. Ivan Čurlík, PhD. |5 |0.05 |
|7. | Ing. Erna Demjén, PhD. |100 |1.00 |
|8. | RNDr. Ján Fedorišin, PhD. |5 |0.00 |
|9. | RNDr. Anežka Hashim, PhD. |100 |0.50 |
|10. | RNDr. Eva Jurčišinová, PhD. |100 |1.00 |
|11. | RNDr. Jana Jurečková, PhD. |70 |0.70 |
|12. | RNDr. Peter Kaliňák, PhD. |100 |1.00 |
|13. | RNDr. Eduard Kladiva, CSc. |100 |1.00 |
|14. | Mgr. Vladimír Komanický, PhD. |7 |0.07 |
|15. | Ing. Marián Krivda, PhD. |5 |0.00 |
|16. | RNDr. Martina Kubovčíková, PhD. |100 |0.33 |
|17. | RNDr. Tomáš Lučivjanský, PhD. |6 |0.06 |
|18. | RNDr. Jozef Marek, PhD. |100 |1.00 |
|19. | RNDr. Matúš Mihálik, PhD. |100 |1.00 |
|20. | Ing. Zuzana Mitróová, PhD |100 |1.00 |
|21. | Ing. Matúš Molčan, PhD. |100 |0.33 |
|22. | Mgr. Ján Mušinský, PhD. |100 |0.00 |
|23. | RNDr. Slavomíra Poniková, PhD. |100 |1.00 |
|24. | RNDr. Marián Putiš, PhD. |100 |1.00 |
|25. | RNDr. Richard Remecký, PhD. |5 |0.00 |
|26. | Mgr. Tomáš Samuely, PhD. |12 |0.12 |
|27. | Ing. Martina Šefčíková, PhD |100 |1.00 |
|28. | RNDr. Katarína Šipošová, PhD. |100 |1.00 |
|29. | RNDr. Jana Tóthová, PhD. |13 |0.13 |
|30. | RNDr. Martin Vaľa, PhD. |100 |0.00 |
|31. | RNDr. Eva Valušová, PhD. |100 |1.00 |
|32. | RNDr. Marek Varga, PhD. |100 |1.00 |
|33. | RNDr. Martin Vavra, PhD. |25 |0.25 |
|34. | Mgr. Daniela Volochová, PhD. |100 |1.00 |
| Odborní pracovníci s VŠ vzdelaním |
|1. | Mgr. Zuzana Bednáriková |12 |0.12 |
|2. | Ing. Richard Bílek |100 |1.00 |
|3. | Ing. Marcela Brasová |100 |1.00 |
|4. | JUDr. Glória Gajdošová |8 |0.08 |
|5. | Ing. Emil Gažo |100 |1.00 |
|6. | Ing. Radka Geciková |39 |0.00 |
|7. | Ing. Igor Hrmo |100 |1.00 |
|8. | Ing. Peter Keša |17 |0.13 |
|9. | Ing. Viktor Kočan |100 |1.00 |
|10. | Ing. Valéria Kočanová |100 |0.91 |
|11. | Ing. Marek Kollarik |100 |1.00 |
|12. | Ing. Ingrid Kuľková |100 |1.00 |
|13. | Mgr. Ronald Langer |100 |1.00 |
|14. | Ing. Ľudmila Lapšanská |33 |0.33 |
|15. | Ing. Marcela Medeová |100 |1.00 |
|16. | Ing. Maxim Mizov |100 |1.00 |
|17. | Mgr. Matej Nikorovič |60 |0.25 |
|18. | Ing. Katarína Paulovičová |100 |1.00 |
|19. | Ing. Vladimír Pavlík |100 |1.00 |
|20. | Ing. Samuel Piovarči |1 |0.01 |
|21. | Ing. Judita Pribišová |100 |1.00 |
|22. | Mgr. Dmytro Rak |100 |1.00 |
|23. | Mgr. Ivan Shepa |100 |1.00 |
|24. | Ing. Miloslav Straka |100 |1.00 |
|25. | Ing. Igor Strhárský |100 |1.00 |
|26. | Ing. Jozef Špalek |70 |0.70 |
|27. | Mgr. Jana Štetiarová |100 |1.00 |
| Odborní pracovníci ÚSV |
|1. | Jozef Bačík |5 |0.05 |
|2. | Rudolf Drozda |100 |1.00 |
|3. | Anna Ivanišová |100 |1.00 |
|4. | Ivan Jurčo |100 |1.00 |
|5. | Gabriela Kozáková |100 |1.00 |
|6. | Monika Lengová |6 |0.06 |
|7. | Mária Nagyová |4 |0.04 |
|8. | Eva Palková |3 |0.03 |
|9. | Imrich Piroško |100 |0.58 |
|10. | Anna Pokrivňáková |8 |0.00 |
|11. | Gabriel Pristáš |100 |1.00 |
|12. | Ing. Mária Sabadková |100 |1.00 |
|13. | Dagmar Sedláková |100 |1.00 |
|14. | Samuel Štefánik |50 |0.00 |
|15. | Viera Štrbinová |100 |1.00 |
|16. | Dana Švarcbergerová |100 |1.00 |
| Ostatní pracovníci |
|1. | Monika Baloghová |76 |0.63 |
|2. | Mária Belková |76 |0.76 |
|3. | Juraj Drozda |100 |1.00 |
|4. | Ján Filičko |100 |1.00 |
|5. | Štefan Fink |100 |1.00 |
|6. | Martina Ivančáková |100 |1.00 |
|7. | Peter Jurko |100 |1.00 |
|8. | Juraj Koribanič |50 |0.50 |
|9. | Mária Pirošová |45 |0.42 |
|10. | Ľudmila Ristvejová |50 |0.50 |
|11. | Božena Soroková |76 |0.76 |
|12. | Ján Timko |100 |1.00 |
Zoznam zamestnancov, ktorí odišli v priebehu roka
| |Meno s titulmi |Dátum odchodu |Ročný prepočítaný úväzok |
| Vedúci vedeckí pracovníci CSc., PhD. |
|1. | RNDr. Ladislav Šándor, CSc. |31.12.2014 |- |
| Vedeckí pracovníci |
|1. | Prasanna Kulkarni |31.7.2014 |0.00 |
| Odborní pracovníci s VŠ vzdelaním |
|1. | Ing. Pavel Binko, CSc. |12.11.2014 |0.00 |
|2. | Ing. Radoslav Gargalík |25.6.2014 |0.25 |
|3. | Mgr. Igor Parnahaj |25.2.2014 |0.01 |
|4. | RNDr. Jozef Parnica |25.2.2014 |0.01 |
|5. | RNDr. Stanislav Uličiansky |1.4.2014 |0.25 |
| Odborní pracovníci ÚSV |
|1. | Jozef Kolcún |30.6.2014 |0.50 |
|2. | Kamila Kondášová |31.3.2014 |0.25 |
Zoznam doktorandov
| |Meno s titulmi |Škola/fakulta |Študijný odbor |
| Interní doktorandi hradení z prostriedkov SAV |
| 1. | Mgr. František Andrejka | Hutnícka fakulta TUKE | 5.2.26 materiály |
| 2. | Mgr. Marek Antoňák | Prírodovedecká fakulta UPJŠ | 4.1.3 fyzika kondenzovaných látok a |
| | | |akustika |
| 3. | Mgr. Marek Capik | Prírodovedecká fakulta UPJŠ | 4.1.3 fyzika kondenzovaných látok a |
| | | |akustika |
| 4. | Mgr. Michal Dančo | Prírodovedecká fakulta UPJŠ | 4.1.2 všeobecná fyzika a matematická fyzika|
| 5. | Mgr. Veronika Hašková | Prírodovedecká fakulta UPJŠ | 4.1.3 fyzika kondenzovaných látok a |
| | | |akustika |
| 6. | Ing. Mária Huráková | Hutnícka fakulta TUKE | 5.2.26 materiály |
| 7. | Ing. Jana Lazúrová | Hutnícka fakulta TUKE | 5.2.26 materiály |
| 8. | Mgr. Jozefína Majorošová | Prírodovedecká fakulta UPJŠ | 4.1.3 fyzika kondenzovaných látok a |
| | | |akustika |
| 9. | Mgr. Zuzana Medvecká | Prírodovedecká fakulta UPJŠ | 4.1.3 fyzika kondenzovaných látok a |
| | | |akustika |
| 10. | Mgr. Lucia Melníková | Prírodovedecká fakulta UPJŠ | 4.1.3 fyzika kondenzovaných látok a |
| | | |akustika |
| 11. | Ing. Samuel Piovarči | Prírodovedecká fakulta UPJŠ | 4.1.3 fyzika kondenzovaných látok a |
| | | |akustika |
| 12. | Ing. Monika Radušovská | Hutnícka fakulta TUKE | 5.2.26 materiály |
| 13. | Mgr. Michal Rajňák | Prírodovedecká fakulta UPJŠ | 4.1.3 fyzika kondenzovaných látok a |
| | | |akustika |
| 14. | Mgr. František Vavrek | Prírodovedecká fakulta UPJŠ | 4.1.3 fyzika kondenzovaných látok a |
| | | |akustika |
| 15. | Mgr. Renáta Verbová | Hutnícka fakulta TUKE | 5.2.26 materiály |
| 16. | Mgr. Peter Zalom | Prírodovedecká fakulta UPJŠ | 4.1.2 všeobecná fyzika a matematická fyzika|
| Interní doktorandi hradení z iných zdrojov |
| 1. | Mgr. Veronika Gdovinová | Prírodovedecká fakulta UPJŠ | 4.1.3 fyzika kondenzovaných látok a |
| | | |akustika |
| 2. | Ing. Zuzana Molčanová | Hutnícka fakulta TUKE | 5.2.26 materiály |
| 3. | Mgr. Viktória Paľúchová | Prírodovedecká fakulta UPJŠ | 4.1.3 fyzika kondenzovaných látok a |
| | | |akustika |
| 4. | Ing. Liudmila Vojtková | Hutnícka fakulta TUKE | 5.2.26 materiály |
| Externí doktorandi |
| 1. | Ing. Richard Jacko | Hutnícka fakulta TUKE | 5.2.26 materiály |
Príloha B
Projekty riešené v organizácii
Medzinárodné projekty
Programy: Medziakademická dohoda (MAD)
1.) Mechanické vlastnosti a prejavy porušenia vysokopevných nanokryštalických kovov pripravených metódou viacnásobnej plastickej deformácie pri teplotách 300 a 77 K. (Mechanical properties and failure pecurarities of the high-strength nanocrystalline metals, processed by the method of severe plastic deformation at temperatures 300 and 77 K)
|Zodpovedný riešiteľ: |Kornel Csach |
|Trvanie projektu: |1.1.2014 / 31.12.2016 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Ivanisenko Yu., Tabachnikova E.D., Psaruk I.A., Smirnov S.N., Kilmametov A., Kobler A., Kuebel C., Kurmanaeva L., Csach K., Mishkuf J., Scherer T., Semerenko Y.A., Hahn H.: Variation of the deformation mechanisms in a nanocrystalline Pd – 10 at.% Au alloy at room and cryogenic temperatures, International Journal of Plasticity 60, (2014), pp. 40 – 57.
2.) Amyloidná agregácia proteínov na hybridných povrchoch (Amyloid aggregation of proteins in hybrid interfaces)
|Zodpovedný riešiteľ: |Zuzana Gažová |
|Trvanie projektu: |1.1.2013 / 31.12.2015 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |1 - Taliansko: 1 |
| | |
Dosiahnuté výsledky:
Sledovali sme interakciu inzulínových amyloidných fibríl s neuroblastómovými bunkami SHSY-5Y pomocou rôznych techník. Určili sme cytotoxicitu inzulínových fibríl pripravených pri rôznom pH. Pomocou fluorescenčného mikroskopu sme sledovali lokalizáciu fibríl v bunkách.
3.) Hierarchia fázových prechodov v kooperatívnych systémoch so spinovou interakciou: Zameranie na emergentné časové škálovanie pre čítacie hlavy (Hierarchi of phase transitions in cooperative systems with spin-interactions: Towards emergent time-scales for read-heads)
|Zodpovedný riešiteľ: |Marián Mihalik |
|Trvanie projektu: |1.1.2014 / 31.12.2016 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |4 - Ukrajina: 4 |
| | |
Dosiahnuté výsledky:
Bol nadviazaný prvý vedecky kontakt medzi riešiteľskými týmami. Pracovisko ÚEF SAV navštívila prof. Valentyna Sirenko období od 1.12. 2014 – 12.12. 2014. Počas jej pobytu boli realizované merania AC susceptibility a magnetizácie v širokom rozsahu teplôt, frekvencií a magnetických poli na monokryštály Sr2Ti2Co2Fe8O19.
4.) (Nanoparticles in anisotropic soft matter)
|Zodpovedný riešiteľ: |Natália Tomašovičová |
|Trvanie projektu: |1.1.2013 / 31.12.2015 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
1.V. Gdovinová, N. Tomašovičová, N. Éber, T. Tóth-Katona, V. Závišová, M. Timko, P. Kopčanský. Influence of the anisometry of magnetic particles on the isotropic-nematic phase transition. Liquid Crystals, 2014, vol. 41(12), p. 1773-1777. DOI: 10.1080/02678292.2014.950615
2.T. Tóth-Katona, P. Salamon, N. Éber, N.Tomašovičová, Z. Mitróová, P. Kopčanský, High concentration ferronematics in low magnetic fields. Journal of Magnetism and Magnetic Materials, 2014, vol. 372, p. 117-12.
5.) Spektroskopické vlastnosti silno korelovaných elektrónových systémov s konkurenčnými usporiadaniami (Spectroscopic properties of strongly correlated systems with competing order)
|Zodpovedný riešiteľ: |Zuzana Vargaeštoková |
|Trvanie projektu: |1.1.2013 / 31.12.2014 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: | |
| |Podpora medzinárodnej spolupráce z národných zdrojov: 396 € |
Dosiahnuté výsledky:
Študovali sme fázový diagram ťažko-fermiónovej zlúčeniny CeCoIn5. Pomocou STM meraní sme ukázali, že ide o d-vlnový supravodič. Merania tiež indikovali prítomnosť pseudomedzery nad kritickou teplotou prechodu do supravodivého stavu Tc (až do výšky 1.25 Tc). Pomocou ac-kalorimetrie a lokálnej hallovskej magnetometrie sme hľadali experimentálny dôkaz o prechode medzi hexagonálnym a štvorcovým usporiadaním vírov v mriežke.
Okrem toho sme sa venovali výskumu zlúčeniny Cr3Te4, v ktorej dochádza k feromagnetickému usporiadaniu pri teplote Tc~325 K a preusporiadaniu spinov pri teplote TN~80 K. Pomocou transportných, termodynamických i spektroskopických metód sme študovali vplyv tlaku na tieto prechody. Získané výsledky prispeli k diskusii o existencii kritického bodu pri tlaku približne 2.2 GPa. Získané výsledky boli prezentované na dvoch medzinárodných konferenciách.
ELECTRICAL TRANSPORT AT HIGH PRESSURES OF Cr3Te4 FERROMAGNET
Pablo Pedrazzini, D. Franco, G. Nieva, D. Jaccard, G. Pristáš and S. Gabáni
prednáška na konferencii Advanced Topics in Magnetism and Superconductivity 2015, Bariloche, Argentína
NON-CONVENTIONAL SUPERCONDUCTIVITY IN THE STRONG-COUPLING LIMIT FOR THE HEAVY FERMION SYSTEM CeCoIn5
Y. Fasano, P. Pedrazzini, P. Szabó, J. Kačmarčík, Z. Pribulová, P. Samuely, V.F. Correa
prednáška na konferencii 27th International Conference on Low Temperature Physics, Buenos Aires, Argentína
6.) Magnetické a štruktúrne vlastnosti nových materiálov (Magnetic and structural properties of novel materials)
|Zodpovedný riešiteľ: |Mária Zentková |
|Trvanie projektu: |1.9.2013 / 31.8.2015 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |1 - Poľsko: 1 |
| | |
Dosiahnuté výsledky:
ANTOŇÁK, Marek - MIHALIK, Marián - ZENTKOVÁ, Mária - MIHÁLIK, Matúš - VAVRA, Martin - LAZÚROVÁ, Jana - FITTA, Magdalena - BALANDA, Maria. Magnetic Properties of La0:85Ag0:15MnO3 Nano-Powders. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 296-297. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1898-794X.Typ: ADCA
MIHALIK, Marián - ZENTKOVÁ, Mária - BRIANČIN, Jaroslav - FITTA, Magdalena - MIHÁLIK, Matúš - LAZÚROVÁ, Jana - VAVRA, Martin. Magnetic Properties of La0:8K0:2MnO3 Nanoparticles. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 312-313. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1898-794X.Typ: ADCA
ZENTKOVÁ, Mária - LAZÚROVÁ, Jana - KOVÁČ, Jozef - MIHALIK, Marián - MIHÁLIK, Matúš - BRIANČIN, Jaroslav - FITTA, Magdalena - KUSIGERSKI, Vladan. Magnetic Properties of NdFe0:9Mn0:1O3. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 306-307. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1898-794X.Typ: ADCA
Programy: Medziústavná dohoda
7.) Štúdium amyloidnej agregácie in vitro a v mozgomiešnom moku (Study of the amyloid aggregation in vitro and in cerebrospinal fluid)
|Zodpovedný riešiteľ: |Zuzana Gažová |
|Trvanie projektu: |1.10.2010 / 31.12.2014 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Výsledky projektu boli publikované v práci: Z. Kristofikova, Z. Gazova et al.,Effects of Ferrofluid and Phytoalexin Spirobrassinin on Thioflavin-T-Based Fluorescence in Cerebrospinal Fluid of the Elderly and Multiple Sclerosis Patients,Neurochem Res, 2014, 39,1502–1510
8.) Prenos energetických častíc v turbulentnej heliosfére (Energetic particle transport in the turbulent heliosphere)
|Zodpovedný riešiteľ: |Milan Stehlík |
|Trvanie projektu: |1.1.2010 / 31.12.2014 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: | |
|Počet spoluriešiteľských inštitúcií: |2 - Ukrajina: 2 |
Programy: COST
9.) Multifunkcionalizované nanočastice pre magnetickú hypertermiu a nepriamu radiačnú (Multifunctional Nanoparticles for Magnetic Hyperthermia and Indirect Radiation Therapy)
|Zodpovedný riešiteľ: |Peter Kopčanský |
|Trvanie projektu: |13.11.2014 / 12.11.2018 |
|Evidenčné číslo projektu: |COST 054/14 akcia TD1402 |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: |Royal Meteorological Institute Centre de Physique du Globe, Dourbes (Viroinval) |
|Počet spoluriešiteľských inštitúcií: |35 - Rakúsko: 3, Belgicko: 3, Cyprus: 1, Česko: 1, Nemecko: 5, Dánsko: 1, Španielsko: 1, |
| |Francúzsko: 3, Veľká Británia: 1, Grécko: 2, Maďarsko: 1, Švajčiarsko: 1, Írsko: 1, Taliansko: 1, |
| |Nórsko: 1, Poľsko: 1, Portugalsko: 3, Rumunsko: 2, Srbsko: 1, Švédsko: 1, Turecko: 1 |
| | |
Dosiahnuté výsledky:
Cieľom prvej etapy riešenia projektu je navrhnúť a pripraviť magnetické nanočastice vhodné na novú experimentálnu liečbu kombinujúcu magnetickú hypertermiu a rádioterapiu.
V rámci riešenia projektu boli pripravené a charakterizované prvé vzorky funkcionalizovaných magnetických nanočastíc pre merania magnetickou hypertermiou a rádioterapiou. Riešiteľská skupina sa naďalej venuje vývoju nových syntéz magnetických nanočastíc a vývoju biokompatibilných obalov. Pripravené nanočastice musia spĺňať mnohé požiadavky ako napr. biokompatibilitu, musia mať dostatočne veľký magnetický moment pre dostatočnú odozvu pre použitie v magnetickej hypertermii.
10.) Supravodivosť na nanoškále: Nové funkcionality prostredníctvom optimalizovaného ohraničenia kondenzátu a polí (Nanoscale Superconductivity:_Novel Functionalities through Optimized _Confinement of Condensate and Fields)
|Zodpovedný riešiteľ: |Peter Samuely |
|Trvanie projektu: |19.10.2012 / 18.10.2016 |
|Evidenčné číslo projektu: |MPNS COST Action MP1201 |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: |Prof. Victor V. Moshchalkov |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |COST: 5000 € |
Dosiahnuté výsledky:
V tomto roku sa slovenskí účastníci, ktorí pochádzajú z ÚEF SAV, ElÚ SAV, FMFI UK a Materiálovo-technologickej fakulty STU, zapájali predovšetkým do Pracovného balíka WP2 Charakterizácia, ako aj do participácie na dvoch hlavných podujatiach projektu. Prvým bol Workshop Advances in nanostructured superconductors: materials, properties and theory Miraflores de la Sierra / Madrid v Španielsku. Na tomto podujatí predniesol pozvanú prednášku Superconductor?Insulator Transition in MoC Ultra Thin Films studied by Scanning Tunneling Microscopy and Spectroscopy P. Szabó. Na konferencii SHYNED (Physics and Applications of Superconducting Hybride Nanoengineered Devices), NanoSC COST, Castellabbate, Taliansko, predniesol pozvanú prednášku MoC ultrathin superconducting films on verge to the insulating state P. Samuely. Poster s názvom Finite quasiparticle lifetime in the surface layer of disordered superconductors predniesol Martin Žemlička z FMFI UK Bratislava. Účasť všetkých troch bola z väčšej časti hradená zo stany projektu COST MP1201. P. Samuely, ako člen Riadiaceho výboru projektu a zodpovedná osoba za podprogram krátkodobých vyslaní/ Short Term Scientific Missions medzi laboratóriami v projekte, recenzoval a administroval celkom 11 vyslaní v dobe trvania od 5 dní po dva mesiace. Jedno vyslanie z CFNT do KU Leuven absolvoval T. Samuely od 17.6. do 8.7. a bolo zamerané na prípravu supravodivých nanoštruktúr pre štúdium supravodivých vírov v nich. Tieto vyslania sú plne hradené z projektu COST. V r. 2014 boli publikované nasledujúce vedecké články, ktoré vznikli s podporou projektu
S. Gabáni, I. Takáčová, G. Pristaš, E. Gažo, K. Flachbart, T. Mori, D. Braithwaite, M. Misek, K.V. Kamenev, M. Hanfland, and P. Samuely: High-pressure effect on the superconductivity of YB6,
Phys. Rev. B 90, 045136 (2014).
M. Sindler, R. Tesar, J. Kolacek, P. Szabo, P. Samuely, V. Haskova, C. Kadlec, F. Kadlec, P. Kuzel:
Far-infrared electrodynamics of thin superconducting NbN film in magnetic fields,
Supercond. Sci. Technol. 27 055009 (2014).
A.P. Goncalves, M.S. Henriques, J.C. Waerenborgh, I. Čurlik, S. Iľkovič, M. Reiffers:
On the crystal structure and physical properties of the UFeSb2 compound
Journal of Alloys and Compounds 601, 43 (2014).
S. Gabáni, G. Pristáš, I. Takáčová, K. Flachbart, E. Gažo, T. Mori, D. Braithwaite, P. Samuely,
Influence of Pressure on Superconductivity in YB6
Acta Physica Polonica 126, 340 (2014).
P. Szabó, P. Neilinger, M. Trgala, M. Grajcar, P. Samuely: Superconductivity Near Transition to Insulating State in MoC Ultrathin Films Studied by Subkelvin STM,
Acta Physica Polonica 126, 368 (2014).
Z. Pribulová, Z. Medvecká, J. Kačmarčík, V. Komanický, T. Klein, P. Husaníková, V. Cambel, J. Šoltýs, G. Karapetrov, P. Samuely: Local Magnetometry of Cu0.064TiSe2,
Acta Physica Polonica 126, 370 (2014).
J. Kačmarčík, Z. Pribulová, V. Paľuchová, P. Husaníková, G. Karapetrov, V. Komanický, P. Samuely:
Specific Heat Study of Superconductivity in Cu0.061TiSe2,
Acta Physica Polonica 126, 322 (2014).
M. Timmermans, T. Samuely, B. Raes, J. Van de Vondel, V. V. Moshchalkov: Dynamic Visualization of Nanoscale Vortex Orbits,
ACS Nano, ISSN 1936-0851, Vol. 8, no. 3 (2014), s. 2782-2787.
G. Zhang, S. Turner, E. A. Ekimov, J. Vanacken, M. Timmermans, T. Samuely, Vl. A. Sidorov, S. M. Stishov, Y. Lu, B. Deloof, B. Goderis, G. Van Tendeloo, J. Van de Vondel, V. V. Moshchalkov: Global and Local Superconductivity in Boron-Doped Granular Diamond,
Advanced Materials 26 (2014), s. 2034-2040.
M. Timmermans, T. Samuely, B. Raes, J. Van de Vondel, V. V. Moshchalkov: Observing vortex motion on NbSe2 with STM,
Physica C 503 (2014), s. 154-157.
11.) Koloidné aspekty nanovedy pre inovatívne procesy a materiály (Colloidal Aspects of Nanoscience for Innovative Processes and Materials)
|Zodpovedný riešiteľ: |Marián Sedlák |
|Trvanie projektu: |19.1.2012 / 18.1.2016 |
|Evidenčné číslo projektu: |CM 1101 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Nové originálne výsledky boli získané v oblasti nanosegregácie (resp. tzv. mezoškálovej fázovej separácie) v roztokoch a kvapalných zmesiach. Zistili sme, že v prípade ternárnych systémov, teda trojzložkových systémov voda/látka1/látka2, kde látka1 je vodorozpustná resp. vodou miešateľná látka a látka 2 je hydrofóbna látka s minimálnou rozpustnosťou vo vode prítomná v nízkych koncentráciách, dochádza k situácii, že látka2 nie je ani molekulárne rozpustená v zmesi, ani sa neseparuje makrofázovo, ale dochádza k tzv. mezoškálovej separácii na nanoúrovni – separuje sa vo forme stabilných nanoštruktúr (nanokvapiek, nanočastíc). Tento mechanizmus platí aj v prípade keď sa v systéme nachádza viac minoritných komponentov, t.j. viac typov hydrofóbnych látok v malých koncentráciách, čo je bežná situácia vo vedeckej praxi aj reálnom živote. Zavádza sa úplne nový fyzikálno-chemický pojem tzv. mezoškálovej rozpustnosti („mesoscale solubility“) čo má ako nový fenomén hodne veľa významných implikácií vo viacerých smeroch vedy aj aplikačnej praxe.
M. Sedlák, D. Rak: On the Origin of Mesoscale Structures in Aqueous Solutions of Tertiary Butyl Alcohol: The Mystery Resolved. J. Phys. Chem. B 118 (10), pp 2726–2737, 2014.
M. Sedlák, D. Rak, I. Šepa: Are Simple Fluids Complex? European Colloid Interface Science 2014, Limassol, Cyprus, September 7-12, 2014
Programy: CERN/MŠ
12.) Experiment ATLAS na LHC v CERN: hlboko-nepružné javy a nová fyzika pri TeV energiách (ATLAS experiment on LHC in CERN: deep-inelastic events and new physics at TeV energies)
|Zodpovedný riešiteľ: |Dušan Bruncko |
|Trvanie projektu: |1.1.2011 / 31.12.2015 |
|Evidenčné číslo projektu: |0777/2011 |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: |CERN, ATLAS kolaborácia |
|Počet spoluriešiteľských inštitúcií: |309 - Argentína: 3, Arménsko: 2, Austrália: 4, Belgicko: 0, Bielorusko: 3, Kanada: 5, Česko: 9, |
| |Nemecko: 27, Dánsko: 3, Španielsko: 3, Francúzsko: 18, Veľká Británia: 29, Gruzínsko: 1, Grécko: 3, |
| |Chorvátsko: 0, Švajčiarsko: 7, Čile: 3, Čína: 4, India: 0, Izrael: 5, Taliansko: 15, Japonsko: 23, |
| |Maroko: 5, Holandsko: 3, Nórsko: 3, Poľsko: 5, Portugalsko: 7, Rumunsko: 2, Rusko: 9, Srbsko: 0, |
| |Slovensko: 1, Slovinsko: 3, Švédsko: 4, Turecko: 5, Taiwan: 2, USA: 93 |
| | |
Dosiahnuté výsledky:
Search for new phenomena in photon+jet events collected in proton--proton collisions at sqrt(s) = 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1309.3230
Physical Letters B 728C (2014), 562-578
Measurement of the mass difference between top and anti-top quarks in pp collisions at sqrt(s) = 7 TeV using the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1310.6527
Physics Letter B 728C (2014), 363-379
Measurement of the production cross section of prompt J/psi mesons in association with a W boson in pp collisions at sqrt{s}=7 TeV with the ATLAS detector
The ATLAS collaboration
(G. Aad et al.).
arXiv:1401.2831
JHEP04 (2014), 172
Measurement of the electroweak Z boson plus dijet production cross section and distributions sensitive to the vector boson fusion production process in pp collisions at sqrt{s} = 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1401.7610
JHEP 04 (2014), 031
Search for dark matter in events with a hadronically decaying W or Z boson and missing transverse momentum in pp collisions at sqrt(s)=8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1309.4017
Physical Review Letters 112 (2014), 041802
Standalone vertex finding in the ATLAS muon spectrometer
The ATLAS collaboration (G. Aad et al.).
arXiv:1311.7070
JINST 9 (2014), P02001
Search for Higgs boson decays to a photon and a Z boson in pp collisions at sqrt(s)=7 and 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1402.3051
Submitted to Phys.Lett. B
Search for Invisible Decays of a Higgs Boson Produced in Association with a Z Boson in ATLAS
The ATLAS collaboration (G. Aad et al.).
arXiv:1402.3244
Phys. Rev. Lett. 112, 201802 (2014)
Search for a multi-Higgs-boson cascade in WWbb events with the ATLAS detector in pp collisions at sqrt(s) = 8 TeV
The ATLAS collaboration (G. Aad et al.).
arXiv:1312.1956
Phys.Rev. D 89 (2014), 032002
The differential production cross section of the phi(1020) meson in sqrt(s)=7 TeV pp collisions measured with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1402.6162
European Physical Journal C 74 (2014), 2895
531. Measurement of the production of a W boson in association with a charm quark in pp collisions at sqrt(s)=7 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1402.6263
JHEP05 (2014), 068
Search for direct production of charginos and neutralinos in events with three leptons and missing transverse momentum in sqrt(s) = 8TeV pp collisions with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1402.7029
JHEP04 (2014), 169
easurement of the top quark pair production charge asymmetry in proton-proton collisions at 7 TeV using the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1311.6724
JHEP02, 107(2014)
Measurement of event-plane correlations in sqrt(s_NN)=2.76 TeV lead-lead collisions with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1403.0489
Phys. Rev. C 90 (2014), 024905
Search for Quantum Black-Hole Production in High-Invariant-Mass Lepton+Jet Final States Using Proton-Proton Collisions at sqrt(s) = 8 TeV and the ATLAS Detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1311.2006
Physical Review Letters 112 (2014), 091804
Search for direct top-squark pair production in final states with two leptons in pp collisions at sqrt(s)=8TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1403.4853
JHEP 06 (2014), 124
Search for direct top squark pair production in events with a Z boson, b-jets and missing transverse momentum in sqrt(s)=8 TeV pp collisions with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1403.5222
Eur. Phys. J. C 74 (2014), 2883
Search for Higgs boson decays to a photon and a Z boson in pp collisions at sqrt(s)=7 and 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1402.3051
Phys. Lett. B 732C (2014), 8-27
Search for direct production of charginos, neutralinos and sleptons in final states with two leptons and missing transverse momentum in pp collisions at sqrt(s) = 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1403.5294
JHEP05 (2014), 071
Measurement of the 4l Cross Section at the Z Resonance and Determination of the Branching Fraction of Z->4l in pp Collisions at sqrt(s) = 7 and 8 TeV with ATLAS
The ATLAS collaboration (G. Aad et al.).
arXiv:1403.5657
Phys.Rev.Lett. 112 (2014), 231806
Search for top quark decays $t\rightarrow qH$ with $H\toÎ?Î?$ using the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1403.6293
JHEP06 (2014), 008
Search for dark matter in events with a Z boson and missing transverse momentum in pp collisions at $\sqrt{s}$=8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1404.0051
Phys. Rev. D 90 (2014), 012004
Measurement of the parity-violating asymmetry parameter alpha_b and the helicity amplitudes for the decay Lambda_b->J/psi+Lambda with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1404.1071
Physical Review D 89 (2014), 092009
Measurement of the low-mass Drell-Yan differential cross section at sqrt(s)=7 TeV using the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1404.1212
JHEP 06 (2014), 112
Electron reconstruction and identification efficiency measurements with the ATLAS detector using the 2011 LHC proton-proton collision data
The ATLAS collaboration (G. Aad et al.).
arXiv:1404.2240
Eur. Phys. J. C 74 (2014), 2941
Search for supersymmetry at sqrt(s)=8 TeV in final states with jets and two same-sign leptons or three leptons with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1404.2500
JHEP 06 (2014), 035
Muon reconstruction efficiency and momentum resolution of the ATLAS experiment in proton-proton collisions at $\sqrt{s}$=7 TeV in 2010
The ATLAS collaboration (G. Aad et al.).
arXiv:1404.4562
Eur. Phys. J. C 74 (2014), 3034
A study of heavy flavor quarks produced in association with top quark pairs at sqrt(s) = 7 TeV using the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1304.6386
Phys. Rev. D 89 (2014), 072012
Measurement of chi_c1 and chi_c2 production with sqrt(s) = 7 TeV pp collisions at ATLAS
The ATLAS collaboration (G. Aad et al.).
arXiv:1404.7035
JHEP 07 (2014), 154
Measurement of the cross section of high transverse momentum $Z\rightarrow b\bar{b}$ production in proton--proton collisions at $\sqrt{s}=8 TeV$ with the ATLAS Detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1404.7042
Physics Letters B 738 (2014), 25-43
Operation and performance of the ATLAS semiconductor tracker
The ATLAS collaboration (G. Aad et al.).
arXiv:1404.7473
JINST 9 (2014), P08009
Monitoring and data quality assessment of the ATLAS liquid argon calorimeter
The ATLAS collaboration (G. Aad et al.).
arXiv:1405.3768
JINST 9 (2014), P07024
Measurement of the centrality and pseudorapidity dependence of the integrated elliptic flow in lead-lead collisions at sqrt(s_NN)=2.76 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1405.3936
Submitted to EPJC
Search for high-mass dilepton resonances in pp collisions at sqrt(s) = 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1405.4123
Phys. Rev. D 90 (2014), 052005
Search for microscopic black holes and string balls in final states with leptons and jets with the ATLAS detector at sqrt(s) = 8 TeV
The ATLAS collaboration (G. Aad et al.).
arXiv:1405.4254
JHEP 08 (2014), 103
Search for supersymmetry in events with four or more leptons in $\sqrt{s}$ = 8 TeV pp collisions with the ATLAS detector ATLAS Collaboration
The ATLAS collaboration (G. Aad et al.).
arXiv:1405.5086
Phys. Rev. D 90 (2014), 052001
Evidence for Electroweak Production of $W^{\pm}W^{\pm}jj$ in $pp$ Collisions at $\sqrt{s}=8$ TeV with the ATLAS Detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1405.6241
Phys. Rev. Lett. 113 (2014), 141803
Light-quark and gluon jet discrimination in pp collisions at $\sqrt{s}$ = 7 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1405.6583
European Physics Journal C 74 (2014), 3023
Search for squarks and gluinos with the ATLAS detector in final states with jets and missing transverse momentum using $\sqrt{s}=8$ TeV proton--proton collision data
The ATLAS collaboration (G. Aad et al.).
arXiv:1405.7875
JHEP 09 (2014), 176
Jet energy measurement and its systematic uncertainty in proton--proton collisions at $\sqrt{s}=7$~TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1406.0076
Submitted to European Physics Journal C
Measurement of the underlying event in jet events from 7 TeV proton-proton collisions with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1406.0392
European Physics Journal C 74 (2014), 2965
Search for direct pair production of the top squark in all-hadronic final states in proton-proton collisions at $\sqrt{s}=8$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1406.1122
JHEP 09 (2014), 015
Measurement of inclusive jet charged-particle fragmentation functions in Pb+Pb collisions at sqrt(s_NN) = 2.76 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1406.2979
Phys. Lett. B 739 (2014), 320-342
Measurement of the $Z/\gamma?^*$ boson transverse momentum distribution in $pp$ collisions at $\sqrt{s}$ = 7 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1406.3660
JHEP 09 (2014), 145
Measurement of the Higgs boson mass from the $H\rightarrow \gamma \gamma$ and $H \rightarrow ZZ^{*} \rightarrow 4\ell$ channels with the ATLAS detector using 25 fb$^{-1}$ of $pp$ collision data
The ATLAS collaboration (G. Aad et al.).
arXiv:1406.3827
Phys.Rev.D 90 (2014), 052004
Search for WZ resonances in the fully leptonic channel using pp collisions at sqrt(s) = 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1406.4456
Phys.Lett. B 737 (2014), 223-243
Search For Higgs Boson Pair Production in the gamma gamma b bbar Final State using pp Collision Data at sqrt(s)=8 TeV from the ATLAS Detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1406.5053
Submitted to Phys.Rev.Lett.
Measurement of the $t\bar{t}$ production cross-section using $e?$ events with $b$-tagged jets in $pp$ collisions at $\sqrt{s}=7$ and 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1406.5375
Eur. Phys. J. C 74 (2014), 3109
Corrigendum to "Measurements of Higgs boson production and couplings in diboson final states with the ATLAS detector at the LHC"
The ATLAS collaboration (G. Aad et al.).
Physics Letters B 734 (2014), 405
Search for the Standard Model Higgs boson decay to $?^{+}?^{-}$ with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1406.7663
Physics Letters B 738 (2014), 68-86
A neural network clustering algorithm for the ATLAS silicon pixel detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1406.7690
JINST 9 (2014), P09009
Comprehensive measurements of $t$-channel single top-quark production cross sections at $\sqrt{s} = 7$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1406.7844
Phys.Rev.D 90 (2014), 112006
Search for the direct production of charginos, neutralinos and staus in final states with at least two hadronically decaying taus and missing transverse momentum in $pp$ collisions at $\sqrt{s}$ = 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.0350
JHEP10(2014)096
Measurements of normalized differential cross-sections for ttbar production in pp collisions at sqrt(s) = 7 TeV using the ATLAS detector
In journal:
Measurements of top-quark pair differential cross-sections in the l+jets channel in pp collisions at â?šs = 7 TeV using the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.0371
Physical Review D 90 (2014), 072004
Simultaneous measurements of the $t\bar{t}$, $W^+W^-$, and $Z/?^{*}\rightarrow??$ production cross-sections in $pp$ collisions at $\sqrt{s} = 7$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.0573
Submitted to Physical Review D
Search for top squark pair production in final states with one isolated lepton, jets, and missing transverse momentum in $\sqrt{s}=$ 8 TeV pp collisions with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.0583
JHEP 11 (2014), 118
Search for strong production of supersymmetric particles in final states with missing transverse momentum and at least three b-jets at $\sqrt{s} =$ 8 TeV proton-proton collisions with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.0600
JHEP 10 (2014), 024
Search for supersymmetry in events with large missing transverse momentum, jets, and at least one tau lepton in 20 fb$^{-1}$ of $\sqrt{s}$=8 TeV proton-proton collision data with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.0603
JHEP09(2014)103
Search for pair-produced third-generation squarks decaying via charm quarks or in compressed supersymmetric scenarios in $pp$ collisions at $\sqrt{s}=8~$TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.0608
Physical Review D 90 (2014), 052008
Measurement of the cross-section of high transverse momentum vector bosons reconstructed as single jets and studies of jet substructure in $pp$ collisions at ${\sqrt{s}}$ = 7 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.0800
New J. Phys. 16 (2014), 113013
Measurement of the $t\bar{t}$ production cross-section as a function of jet multiplicity and jet transverse momentum in 7 TeV proton-proton collisions with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.0891
Submitted to JHEP
Observation of an Excited Bc+/- Meson State with the ATLAS Detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.1032
Phys.Rev.Lett. 113 (2014), 212004
Search for new phenomena in the dijet mass distribution using $pp$ collision data at $\sqrt{s}=8$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.1376
Submitted to Phys. Rev. D.
Flavour tagged time dependent angular analysis of the $B_s \rightarrow J/??$ decay and extraction of $??_s$ and the weak phase $?_s$ in ATLAS
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.1796
Phys. Rev. D 90 (2014), 052007
Search for contact interactions and large extra dimensions in the dilepton channel using proton-proton collisions at sqrt(s)= 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.2410
European Physical Journal C 74 (2014), 3134
Measurement of differential production cross-sections for a $Z$ boson in association with $b$-jets in 7 TeV proton-proton collisions with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.3643
JHEP 10 (2014), 141
Measurement of the muon reconstruction performance of the ATLAS detector using 2011 and 2012 LHC proton-proton collision data
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.3935
Eur. Phys. J. C 74 (2014), 3130
Measurements of fiducial and differential cross sections for Higgs boson production in the diphoton decay channel at $\sqrt{s}=8$ TeV with ATLAS
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.4222
JHEP 09 (2014), 112
Measurements of spin correlation in top-antitop quark events from proton-proton collisions at $\sqrt{s}=7$ TeV using the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.4314
Phys. Rev. D 90(2014), 112016
Electron and photon energy calibration with the ATLAS detector using LHC Run 1 data
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.5063
European Physical Journal C 74 (2014), 3071
Measurement of the production cross-section of $?(2S)\to J/?(\to?^+?^-)?^+?^-$ in $pp$ collisions at $\sqrt{s}=7$ TeV at ATLAS
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.5532
JHEP 09 (2014), 079
Measurements of jet vetoes and azimuthal decorrelations in dijet events produced in $pp$ collisions at $\sqrt{s}$ = 7 TeV using the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.5756
European Physics Journal C 74 (2014), 3117
Search for new particles in events with one lepton and missing transverse momentum in $pp$ collisions at $\sqrt{s}$ = 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.7494
JHEP 09 (2014), 037
Search for new resonances in $W?$ and $Z?$ Final States in $pp$ Collisions at $\sqrt{s}=8$ TeV with the ATLAS Detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1407.8150
Phys. Lett. B 738 (2014), 428-447
Search for $W' \rightarrow tb \rightarrow qqbb$ Decays in pp Collisions at $\sqrt{s}$ = 8 TeV with the ATLAS Detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1408.0886
Submitted to EPJC
Performance of the ATLAS muon trigger in pp collisions at $\sqrt{s}=8$ TeV
The ATLAS collaboration (G. Aad et al.).
arXiv:1408.3179
Submitted to European Physics Journal C
Fiducial and differential cross sections of Higgs boson production measured in the four-lepton decay channel in $pp$ collisions at $\sqrt{s}$=8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1408.3226
Physics Letters B 738 (2014), 234-253
Measurement of flow harmonics with multi-particle cumulants in Pb+Pb collisions at $\sqrt{s_{NN}}=2.76$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1408.4342
European Physics Journal C 74 (2014), 3157
Measurement of the production and lepton charge asymmetry of $\textit{W}$ bosons in Pb+Pb collisions at $\sqrt{s_{\mathrm{\mathbf{NN}}}}=$ 2.76 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1408.4674
Submitted to European Physics Journal C
Measurements of Higgs boson production and couplings in the four-lepton channel in pp collisions at center-of-mass energies of 7 and 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1408.5191
Submitted to Physical Review D
Search for the lepton flavor violating decay $Z \rightarrow e ?$ in pp collisions at $\sqrt{s}$ = 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1408.5774
Physical Review D 90 (2014), 072010
Measurement of the total cross section from elastic scattering in $pp$ collisions at $\sqrt{s}=7$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1408.5778
Nuclear Physics B 889 (2014), 486-548
A measurement of the ratio of the production cross sections for W and Z bosons in association with jets with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1408.6510
European Physics Journal C 74 (2014), 3168
Measurement of Higgs boson production in the diphoton decay channel in $pp$ collisions at center-of-mass energies of 7 and 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1408.7084
Physical Review D 90 (2014), 112015
Search for long-lived neutral particles decaying into lepton jets in proton--proton collisions at $\sqrt{s}$ = 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1409.0746
Submitted to JHEP
Measurement of the top-quark mass in the fully hadronic decay channel from ATLAS data at $\sqrt{s}=7$ TeV
The ATLAS collaboration (G. Aad et al.).
arXiv:1409.0832
Submitted to Eur. Phys. J. C
Measurement of long-range pseudorapidity correlations and azimuthal harmonics in $\sqrt{s_{\mathrm{NN}}}$ = 5.02 TeV proton-lead collisions with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1409.1792
Phys. Rev. C 90 (2014), 044906
Search for $H \to ??$ produced in association with top quarks and constraints on the Yukawa coupling between the top quark and the Higgs boson using data taken at 7 TeV and 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1409.3122
Physics Letters B 740 (2014), 222-242
Measurement of distributions sensitive to the underlying event in inclusive Z-boson production in $pp$ collisions at $\sqrt{s}=7$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1409.3433
European Physical Journal C 74 (2014), 3195
Search for pair and single production of new heavy quarks that decay to a $Z$ boson and a third-generation quark in $pp$ collisions at $\sqrt{s}=8$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1409.5500
JHEP 11 (2014), 104
Search for non-pointing and delayed photons in the diphoton and missing transverse momentum final state in 8 TeV $pp$ collisions at the LHC using the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1409.5542
Physics Review D 90 (2014), 112005
Search for neutral Higgs bosons of the minimal supersymmetric standard model in pp collisions at $\sqrt{s}$ = 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1409.6064
JHEP 11 (2014), 056
Search for resonant diboson production in the $\ell\ell q\bar{q}$ final state in pp collisions at $\sqrt{s} = 8$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1409.6190
Submitted to European Physical Journal C
Search for the $b\bar{b}$ decay of the Standard Model Higgs boson in associated $(W/Z)H$ production with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1409.6212
Submitted to JHEP
Measurements of the W production cross sections in association with jets with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1409.8639
Submitted to European Physical Journal C
Search for s-channel single top-quark production in proton-proton collisions at $\sqrt{s}$=8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1410.0647
Phys. Lett. B 740 (2014), 118-136
Search for dark matter in events with heavy quarks and missing transverse momentum in $pp$ collisions with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1410.4031
Submitted to Eur. Phys. J. C
Search for $W' \to t\bar{b}$ in the lepton plus jets final state in proton-proton collisions at a centre-of-mass energy of $\sqrt{s}$ = 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1410.4103
Submitted to Phys. Lett. B
Search for invisible particles produced in association with single-top-quarks in proton-proton collisions at $\sqrt{s}$ = 8 TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1410.5404
Submitted to EPJC
Performance of the ATLAS Liquid Argon Calorimeter after three years of LHC operation and plans for a future upgrade
P. Strizenec on behalf of ATLAS collaboration
ATL-COM-LARG-2014-001, International conference:Instrumentation for Colliding Beam Physics, INSTR14, 24 February to 01 March, 2014, Novosibirsk, Russia
JINST 9 (2014), C09007
Luminosity Monitoring in ATLAS with MPX Detectors
Andre Sopczak, Babar Ali, Nedaa Asbah, Petr Benes, Benedikt Bergmann, Bartolomej Biskup, Michael Campbell, Erik Heijne, Jan Jakubek, Edward Kladiva, Claude Leroy, Marzio Nessi, Stanislav Pospisil, Frank Seifert, Jaroslav Solc, Paul Soueid, Michal Suk, Daniel Turecek, and Zdenek Vykydal
25.3. 2014,Mainz, Germany
T 64:Halbleiter 4
Measurement of the $WW+WZ$ cross section and limits on anomalous triple gauge couplings using final states with one lepton, missing transverse momentum, and two jets with the ATLAS detector at $\sqrt{\rm{s}} = 7$ TeV
The ATLAS collaboration (G. Aad et al.).
arXiv:1410.7238
Submitted to JHEP
Measurement of the inclusive jet cross-section in proton-proton collisions at $\sqrt{s}=7$ TeV using 4.5 fb$^{-1}$ of data with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1410.8857
Submitted to JHEP
Search for new phenomena in events with a photon and missing transverse momentum in $pp$ collisions at $\sqrt{s}=8$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1411.1559
Submitted to Physical Review D
Search for new phenomena in events with three or more charged leptons in $pp$ collisions at $\sqrt{s}=8$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1411.2921
Submitted to JHEP
Measurements of the Nuclear Modification Factor for Jets in Pb+Pb Collisions at $\sqrt{s_{\mathrm{NN}}}=2.76$ TeV with the ATLAS Detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1411.2357
Submitted to Physical Review Letters
Measurement of three-jet production cross-sections in pp collisions at 7 TeV centre-of-mass energy using the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1411.1855
Submitted to EPJC
Searches for heavy long-lived charged particles with the ATLAS detector in proton-proton collisions at $\sqrt{s}$ = 8 TeV
The ATLAS collaboration (G. Aad et al.).
arXiv:1411.6795
Submitted to JHEP
Search for anomalous production of prompt same-sign lepton pairs and pair-produced doubly charged Higgs bosons with $\sqrt{s} = 8$ TeV $pp$ collisions using the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1412.0237
Submitted to JHEP
Measurement of the transverse polarization of $\Lambda$ and $\bar Lambda$ hyperons produced in proton--proton collisions at $\sqrt{s}=7$ TeV using the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1412.1692
Submitted to Phys.Rev. D
Search for the $X_b$ and other hidden-beauty states in the $\pi^+ \pi^-\Upsilon(1 \rm S)$ channel at ATLAS
The ATLAS collaboration (G. Aad et al.).
arXiv:1410.4409
Physics Letters B 740 (2015), 199-217
Centrality and rapidity dependence of inclusive jet production in $\sqrt{s_\mathrm{NN}} = 5.02$ TeV proton--lead collisions with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1412.4092
Submitted to Phys.Rev. D
Measurement of Spin Correlation in Top-Antitop Quark Events and Search for Top Squark Pair Production in pp Collisions at $\sqrt{s}=8$ TeV Using the ATLAS Detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1412.4092
Submitted to Phys.Rev.Letters
Observation and measurements of the production of prompt and non-prompt $J/\Psi$ mesons in association with a $Z$ boson in $pp$ collisions at $\sqrt{s}= 8$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1412.6428
Submitted to EPJC
Search for charged Higgs bosons decaying via $H^{\pm} \rightarrow \tau^{\pm}\nu$ in fully hadronic final states using $pp$ collision data at $\sqrt{s} = 8$ TeV with the ATLAS detector
The ATLAS collaboration (G. Aad et al.).
arXiv:1412.6663
Submitted to JHEP
Identification and energy calibration of hadronically decaying tau leptons with the ATLAS experiment in $pp$ collisions at $\sqrt{s}$=8 TeV
The ATLAS collaboration (G. Aad et al.).
arXiv:1412.7086
Submitted to EPJC
13.) Experiment ALICE na LHC v CERN: štúdium vlastností silne interagujúcej hmoty pri extrémnych hustotách energie (ALICE experiment at the CERN LHC: a study of strong interacting matter properties at high energy densities.)
|Zodpovedný riešiteľ: |Ivan Králik |
|Trvanie projektu: |1.1.2013 / 31.12.2015 |
|Evidenčné číslo projektu: |CERN/MŠ ALICE KE, zmluva o financovaní 778/2011 |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: | CERN - European organization for nuclear research, Geneva |
|Počet spoluriešiteľských inštitúcií: |99 - Arménsko: 1, Brazília: 0, Kuba: 1, Česko: 3, Nemecko: 7, Dánsko: 1, Fínsko: 1, Francúzsko: 8, |
| |Veľká Británia: 1, Grécko: 0, Chorvátsko: 2, Maďarsko: 1, Švajčiarsko: 1, Čína: 2, India: 8, |
| |Taliansko: 13, Japonsko: 3, Kórejská republika: 4, Mexiko: 4, Holandsko: 2, Nórsko: 3, Peru: 1, |
| |Poľsko: 3, Portugalsko: 0, Rumunsko: 2, Rusko: 10, Slovensko: 2, Švédsko: 1, Ukrajina: 1, USA: 12, |
| |JAR: 1 |
|Čerpané financie: |MŠVVaS SR: 60000 € |
Dosiahnuté výsledky:
Kolaborácia ALICE v roku 2013 publikovala 20 článkov v odborných časopisoch. Niektoré vybrané publikácie:
ALICE Collaboration (..., J. Bán, ..., P. Kaliňák, ..., I. Králik, ..., M. Krivda, ..., J. Mušinský, ..., L. Šándor, ..., M. Vaľa), Multiplicity dependence of pion, kaon, proton and lambda production in p-Pb collisions at root s(NN)=5.02 TeV, PHYSICS LETTERS B 728 (2014) p. 25-38
ALICE Collaboration (..., J. Bán, ..., P. Kaliňák, ..., I. Králik, ..., M. Krivda, ..., J. Mušinský, ..., L. Šándor, ..., M. Vaľa), Multi-strange baryon production at mid-rapidity in Pb-Pb collisions at root s(NN)=2.76 TeV, PHYSICS LETTERS B 728 (2014) 216-227 Erratum: PHYSICS LETTERS B734 (2014) 409-410.
ALICE Collaboration (... P. Kaliňák, ..., I. Králik, ..., M. Krivda, ..., J. Mušinský, ..., L. Šándor, ..., M. Vaľa), Measurement of visible cross sections in proton-lead collisions at ?sNN = 5.02 TeV in van der Meer scans with the ALICE detector, JOURNAL OF INSTRUMENTATION 9 (2014) P11003
ALICE Collaboration (..., J. Bán, ..., P. Kaliňák, ..., I. Králik, ..., M. Krivda, ..., J. Mušinský, ..., L. Šándor, ..., M. Vaľa), Production of charged pions, kaons and protons at large transverse momenta in pp and Pb-Pb collisions at root s(NN)=2.76 TeV, PHYSICS LETTERS B 736 (2014) p. 196-207
ALICE Collaboration (... P. Kaliňák, ..., I. Králik, ..., M. Krivda, ..., J. Mušinský, ..., L. Šándor, ..., M. Vaľa), Neutral pion production at midrapidity in pp and Pb–Pb collisions at sNN=2.76TeV, THE EUROPEAN PHYSICAL JOURNAL C 74 (2014) art. no. 3108
Programy: Multilaterálne - iné
14.) JEM-EUSO, Kozmické Observatórium Extrémneho Vesmíru na palube Japonského Experimentálneho Modulu (JEM-EUSO, Extreme Universe Space Observatory Onboard Japan Experiment Module)
|Zodpovedný riešiteľ: |Karel Kudela |
|Trvanie projektu: |1.1.2010 / 31.12.2017 |
|Evidenčné číslo projektu: |MVTS JEM-EUSO |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: | Univ. Tuebingen |
|Počet spoluriešiteľských inštitúcií: |22 - Bulharsko: 1, Nemecko: 2, Španielsko: 2, Francúzsko: 2, Švajčiarsko: 2, Taliansko: 2, |
| |Japonsko: 0, Kórejská republika: 2, Mexiko: 2, Poľsko: 2, Rusko: 2, Slovensko: 1, USA: 2 |
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Dosiahnuté výsledky:
Práce na upresňovaní možností registrácie a rekonštrukcie spŕšok od primárnych častíc extrémnych energií v experimente JEM-EUSO vidli k práci [1]. Opis techniky je v článku [2]. Okrem toho boli členmi tímu prezentované na medzinárodných poradách a konferenciách viaceré reporty, ktoré sú na internej stránke skupiny [3-12]. K tomu boli využité aj aktivity študentov - diplómové práce na TU Košice. Viaceré práce s implicitným spoluautorstvom teamu JEM-EUSO v ktorom sú pracovníci ÚEF SAV) publikované v r. 2014 sú v článkoch currentovaných časopisov, ktoré je možné nájsť na stránkach uvedených v [13].
1. Bertaina M., Biktemerova S., Bittermann K., Bobik P., Campana D., Fenu F., Gorgi A., Guarino F., Guzmán A., Higashide K., Medina-Tanco G., Mernik T., Naumov D., Putis M., Rodríguez Frías M. D., Sáez Cano G.,
Santangelo A., Shinozaki K., Toscano S., Performance and air-shower reconstruction techniques for the JEMEUSO mission, Advances in Space Research, 53, 10, 1515, 2014
2. Bertaina M., Bobik P., Fenu F., Shinozaki K., JEM-EUSO observational technique and exposure, Experimental Astronomy, Online First 03/2014, 2014ExA...tmp....9B
3. Kudela, K., Country status: JEM-EUSO in Slovakia (report covering the interval since Nov. 13, 2013), ESTEC, May 13, 2014
4. J. Vasilko, M. Vrabel, E. Gajdoš, P. Bobik, B. Pastirčák & Ke group, Hough transform ESAF implementation, 15th International Meeting of the JEM-EUSO Collaboration, Palermo, Italy, 9. - 13. june 2014
5. Blahoslav Pastirčák & KE group, PWISE analysis of fake events,Simulation meeting Palermo June 2014
6. Biktemerova, S., P. Bobik, M. Bertaina, & Ke group, South Atlantic Anomaly influence to JEM-EUSO measurements Trapped protons effect, 15th International Meeting of the JEM-EUSO Collaboration Palermo, Italy, 9. - 13. june 2014
7. Bobik, P., M. Putiš, Š. Mackovjak,Atmospheric Gravity Waves model, JEM-EUSO simulation and atmospheric meeting Toulouse, 1. october 2014
8. Jozef Vasilko, Michal Vrábel, Marian Putis, Pavol Bobik, Pattern Recognition using Hough Algorithm, JEM-EUSO simulation and atmospheric meeting, Toulouse (october 2014)
9. Marian Putis, Pavol Bobik, Simon Mackovjak, Nightglow background model -
update, JEM-EUSO simulation and atmospheric meeting, Toulouse (october 2014)
10. Pastircak B., Bobik P., Putis M., Bertaina M., Shinozaki K., Fenu F., The analysis of fake trigger events background in planned JEM-EUSO experiment, 2014 International Symposium on Future Directions
in Ultra High Energy Cosmic Ray Physics, CERN , Switzerland, 18 - 22.august 2014, poster
11. M. Putiš, P. Bobík, Š. Mackovjak, Preliminary AURIC & libRADtran background simulation for EUSO-Balloon flight, The 16th JEM-EUSO International Meeting, Moscow, Russia (december 2014)
12. Simon Mackovjak, Andrii Neronov, Pavol Bobík, Marián Putiš, Luis Del Peral, Progress of UV background analysis from EUSO-Balloon data, 16th JEM-EUSO International Meeting, Moscow, Russia, 2 Dec 2014
13.
Programy: Bilaterálne - iné
15.) Masívne supravodiče s optimalizovaným piningom (Bulk Superconductors with optimesed pinning)
|Zodpovedný riešiteľ: |Pavel Diko |
|Trvanie projektu: |1.1.2014 / 31.12.2015 |
|Evidenčné číslo projektu: |Stefanik Sk-Fr-2013-0025 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
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Dosiahnuté výsledky:
Príprava a štruktúrna analýza supravodičov typy YBCO, GdBCO, FeSe, TaS2 a MgB2
16.) Štúdium amyloidogénnych proteínov a ich cytotoxicity (Investigation of the amyloidogenic proteins in relationship with their cytotoxic effect)
|Zodpovedný riešiteľ: |Zuzana Gažová |
|Trvanie projektu: |1.1.2013 / 31.12.2014 |
|Evidenčné číslo projektu: |SK-RO-0016-12 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |1 - Rumunsko: 1 |
|Čerpané financie: |APVV: 1800 € |
Dosiahnuté výsledky:
Študovali sme účinok morfologicky odlišných lyzozýmových fibríl na LLC-PK1 renálne bunky.Výsledky experimentov ukázali, že obidva typy maturovaných lyzozýmových amyloidných fibríl sa aktívne podieľajú na cytotoxicite, avšak s rozdielnym účinkom.Zvyšovanie cytotoxicity so zvyšovaním koncentrácie fibríl bol pozorovaný pre fibrily vytvorené v kyslom pH, cytotoxický účinok "všetko alebo nič" bol pozorovaný pre fibrily vytvorené v neutrálnom pH. Experimenty tiež ukázali, že cytotoxicita obidvoch typov fibríl je spôsobená spustením neskorej apoptózy/nekrózy.
MOCANU et al. Polymorphism of hen egg white lysozyme amyloid fibrils influences the cytotoxicity in LLC-PK1 epithelial kidney cells. In International Journal of Biological Macromolecules, 2014, vol. 65, p. 176-187.
Programy: ERANET
17.) Magneticky aktívne anizotrópne kompozitne systémy (Magnetically active anisotropic composite systems)
|Zodpovedný riešiteľ: |Peter Kopčanský |
|Trvanie projektu: |1.9.2013 / 31.8.2016 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |9 - Maďarsko: 5, Taiwan: 4 |
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Dosiahnuté výsledky:
WP1: Na pracovisku ÚEF SAV boli pripravené sférické, tyčinkové a retiazkové magnetické nanočastice (MN) a uhlíkové nanorúrky s chemicky naviazanými magnetickými nanočasticami. Tvar a rozmer bol charakterizovaný pomocou transmisnej elektrónovej mikroskópie (TEM) a Zetasizerom. Magnetické vlastnosti boli študované pomocou SQUID magnetometra.
WP2: Pripravené MN boli použité na prípravu zmesí MN s kvapalnými kryštálmi 6CHBT, 6CB a zmesou bent-core a calamitic kvapalných kryštálov. Tieto kompozitné systémy boli charakterizované pomocou diferenciálnej skenovacej kalorimetrie (DSC) a polarizačného mikroskopu. Magnetické vlastnosti boli študované pomocou SQUID magnetometra.
WP3: Na pracovisku ÚEF SAV bolo skonštruované experimentálne zariadenie na štúdium fázových prechodov kvapalných kryštálov a ich kompozitných systémov pomocou kapacitných meraní v magnetickom a elektrickom poli. Toto nové experimentálne zariadenie umožňuje tiež študovať teplotné závislosti. Študovali sme vplyv vonkajšieho magnetického poľa na fázový prechod z izotrópnej do nematickej fázy v zmesi bent-core a calamitic kvapalných kryštálov dopovaných sférickými MN. Získané výsledky ukázali, že dopovanie vedie k viac ako 3-násobnej redukcii kritického magnetického poľa Freederickszovho prechodu. Naviac, experimentálne výsledky potvrdili teoretický predpovedaný negatívny posun teploty prechodu z izotrópnej do nematickej fázy.
Ďalej bol študovaný vplyv tvarovej anizotrópie MN na teplotu prechodu z izotrópnej do nematickej fázy. Fázový prechod bol študovaný polarizačným mikroskopom a dielektrickými meraniami. Potvrdili sme teoretický predpovedaný vplyv tvarovej anizotrópie na tento prechod, keď sme ukázali, že kým sférické MN znižujú teplotu prechodu, tyčinkové MN túto teplotu zvyšujú.
Ďalšie experimentálne zariadenie na magneto-optické a magneto-dielektrické merania bolo skonštruované a testované na pracovisku Wigner RCP v Budapešti. Na tomto zariadení bol študovaný vplyv veľmi malého biasového magnetického poľa na nematický direktor na rozhraní s povrchom pomocou magneto-optických a dielektrických meraní. Získané výsledky ukázali, že biasové pole nie nutné na dosiahnutie odozvy kompozitných systémov na nízke magnetické polia, a že agregačné procesy majú výrazný vplyv na vlastnosti týchto kompozitných systémov.
WP4: Bol navrhnutý, syntetizovaný a ocharakterizovaný nový monomér, ktorý obsahuje azobenzén a niekoľko vedľajších polymérnych reťazcov, ktoré sú naviazané na základný reťazec metylhydrosiloxanu (s dvoma rôznymi stupňami polymerizácie, s a bez pridania fotoreaktivního derivátu benzofenónu).Získané materiály ukázali samo usporadúvajúce sa správanie a existenciu nematickej kvapalno-kryštalickej fázy v širokom teplotnom rozsahu až do záporných teplôt. Optické vlastnosti týchto nových fotochromických kvapalno-kryštalických materiálov boli určené pomocou absorbčných spektier orientovaných vzoriek a pomocou foto-indukovanej birefrigencie. Výsledky ukazujú existenciu dichroizmu bočných polymérov a teda predstavujú potenciálneho kandidáta pre ich aplikáciu ako optických pamäti.
WP5: Cieľom je simulovať interakcie magnetických nanočastíc s molekulami kvapalných kryštálov. Na tento účel používame openmd (voľná molekulárna dynamika), ktorá umožňuje simulovať kvapalný kryštál na atómovej úrovni. Magnetické častice pozostávajú z množstva atómov fixnou vzdialenosťou medzi nimi (rigidne teleso). V prvom priblížení sme sa zamerali na použitie malého množstva tuhých telies a na zadefinovanie silových polí a interakcií s molekulami kvapalného kryštálu. Tento prístup bude využitý pre ďalšie simulácie. V ďalšej práci bude tento prístup rozšírený na reálne molekuly kvapalných kryštálov rôzneho tvaru a veľkosti. Cieľom je popísať interakcie magnetických častíc a molekúl kvapalného kryštálu v nematickej a izotrópnej fáze.
Predbežné výsledky boli diskutované na stretnutí riešiteľov v Budapešti 2. apríla 2014. Časť výsledkov bola publikovaná a prezentovaná na konferenciach (The European Conference PHYSICS OF MAGNETISM 2014 (PM'14) June 23-27 in Poznań, Poland and 25th International Liquid Crystal Conference, 29 June - 4 July 2014, Trinity College Dublin, Ireland).
1.V. Gdovinová, N. Tomašovičová, N. Éber, T. Tóth-Katona, V. Závišová, M. Timko, P. Kopčanský. Influence of theanisometry of magneticparticles on theisotropic-nematicphasetransition. Liquid Crystals, 2014, vol. 41(12), p. 1773-1777. DOI: 10.1080/02678292.2014.950615
2.N. Tomašovičová, M. Timko, V. Závišová, A. Hasim, J. Jadzyn, X. Chaud, E. Beaugnon, P. Kopčanský. Thephasetransitions in liquidcrystaldopedwithmagneticparticles of differentshapes in combinedelectric and magneticfields. Int. J. Thermophys. DOI 10.1007/s10765-014-1622-4.
3.T. Tóth-Katona, P. Salamon, N. Éber, N.Tomašovičová, Z. Mitróová, P. Kopčanský, Highconcentrationferronematics in lowmagneticfields. Journal of Magnetism and Magnetic Materials, 2014, vol. 372, p. 117-12.
4.T. Tóth-Katona,M. Cigl, K. Fodor-Csorba, V. Hamplová, I. Jánossy, M. Kašpar, T. Vojtylová, F. Hampl, A. Bubnov. Functional photochromic methylhydrosiloxane-based side chain liquid crystalline polymers. Macromol. Chem. Phys.,2014, vol. 215(8), p. 742-752. DOI: 10.1002/macp.201300729
5.L. Melníková, V.I.Petrenko, M.V.Avdeev, V.M.Garamus, L.Almásy, O.I.Ivankov, L.A. Bulavin, Z.Mitróová,P. Kopčanský, Effect of iron oxide loading on magnetoferritin structure in solution as revealed by SAXS and SANS. In Colloids and Surfaces B - Biointerfaces, 2014, vol. 123, p. 82-88.
6.P. Kopčanský, L. Tomčo, J. Jadzyn, J. Swiergiel, J. Majorošová, M. Kubovčíková, M. Timko, M. Rajňák, K. Šipošová, Z. Gažová, Z. Bednariková, N. Tomašovičová, Chin-Kun Hu, S. Hayryan, I. Studenyak, T. M. Kovalchuk, O. V. Kovalchuk. Dielectric properties of lyotropic magnetic liquid crystal. Acta Phys. Polon. A.- accepted
7.A. Juríková, K. Csach, J. Miškuf, N. Tomašovičová, Z. Mitróová, V. Závišová, M. Koneracká, P. Kopčanský, M. Timko, N. Éber, K. Fodor- Csorba, A. Vajda. Thermal stability of bent-coreliquidcrystalsdopedwithmagneticnanoparticles. ActaPhys. Polon. A. – accepted
8.P. Kopčansky, N. Tomašovičová, V. Gdovinová, M. Timko, N. Éber, T. Tóth-Katona, J. Jadzyn, J. Honkonen, X. Chaud.How to enhance sensitivity of liquid crystals to external magnetic field? Acta Phys. Pol. A- accepted.
18.) Malé zariadenie na získavanie energie na báze magnetostrikčných amorfných a nanokryštalických materiálov (Small energy harvester based on magnetostrictive amorphous and nanocrystalline materials )
|Zodpovedný riešiteľ: |Ivan Škorvánek |
|Trvanie projektu: |1.1.2012 / 31.12.2014 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: |National Institute of Research and Development for Technical Physics |
|Počet spoluriešiteľských inštitúcií: |2 - Rumunsko: 2 |
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Dosiahnuté výsledky:
Bol vyvinutý prototyp zariadenia na získavanie energie z vibrácií v okolitom prostredí, ktoré využiva nanokryštalické materiály. Zariadenie pozostáva z dvoch malých permanentných magnetov pevne spojených s nemagnetickou pružinou, ktoré v dôsledku vonkajších mechanických vibrácií oscilujú v blízkosti cievky s jadrom z magneticky mäkkej nanokryštalickej zliatiny. Cyklické premagnetovanie jadra zloženého z viacerých nanokryštalických kovových pásikov zlepených epoxidovou živicou vedie k vzniku indukovaného napätia v cievke. Účinnosť premeny mechanickej energie vibrácií na elektrickú energiu je výrazným spôsobom ovplyvňovaná magnetickými vlastnosťami jadra. Požadovaná kombinácia vysokej magnetickej permeability a vysokej magnetickej polarizácie bola dosiahnutá optimalizáciou kompozičného zloženia a parametrov termomagnetického spracovania nanokryštalických zliatin v externom magnetickom poli. Najlepšie výsledky boli získané pre jadro pozostávajúce z nanokryštalickej zliatiny Fe73.5Si13.5B9Nb3Cu1 spracovanej v pozdĺžnom magnetickom poli, pre ktoré bol pri frekvencii vibrácií 50 Hz a zrýchlení 1 g (9,8 m/s2) dosiahnutý maximálny výstupný výkon zariadenia približne 30mW.
1.CHIRIAC, Horia - TIBU, M. - LUPU, Nicoleta - ŠKORVÁNEK, Ivan - ÓVÁRI, T.A. Nanocrystalline ribbons for energy harvesting applications. In Journal of Applied Physics, 2014, vol. 115, no. 17, art. no. 17A320.
2.BLAZQUEZ, Javier- Marcin, Jozef- VARGA, Marek- FRANCO, Victorino- Conde, Alexandro- ŠKORVÁNEK, Ivan. Influence of microstructure on the enhancement of soft magnetic character and the induced anisotropy of field annealed HITPERM-type alloys. In Journal of Applied Physics, 2015, vol. 117, art. no. 17A301.
3.ŠKORVÁNEK, Ivan - MARCIN, Jozef - KOVÁČ, J. - ŠVEC, Peter - LUPU, N. - CHIRIAC, H. Tuning of soft magnetic properties in FeCo- and FeNi- based amorphous and nanocrystalline alloys by thermal processing in external magnetic field. In Advanced Materials Research, 2014, vol. 783-786, p. 1937-1942.
4.CAPIK, Marek - ŠVEC, Peter Jr. - MARCIN, Jozef - KOVÁČ, Jozef - SOPKO, Martin - JANIČKOVIČ, Dušan - ŠVEC, Peter - ŠKORVÁNEK, Ivan. Effect of Temperature on Magnetization Processes in Amorphous Rapidly Solidified FeSiB/CoSiB Bilayer Ribbons. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 120-121.
5.CHIRIAC, H. - TIBU, M. - TUFESCU, F. - SKORVANEK, I. - OVARI, T.A. - LUPU, N. Vibration Energy Harvesting Device for a Wireless Sensors Monitoring System, 10th European Conference on Magnetic Sensors and Actuators, EMSA 2014, Vienna, Austria, July 6-9, 2014, Book of abstracts, p. 212
6.ŠKORVÁNEK, Ivan. Field-annealed Soft Magnetic Amorphous and Nanocrystalline Ribbons with Improved Energy Performance. In CIMTEC 2014 : 6th Forum on New Materials, June 15-19, 2014, Montecatini Terme, Italy, invited lecture.
7.ŠKORVÁNEK, Ivan - MARCIN, Jozef - CAPIK, Marek - VARGA, Marek - JANOTOVÁ, Irena - ŠVEC, Peter. Field-annealed amorphous and nanocrystalline bilayer ribbons with tailorable soft magnetic properties. In MAP6 : 6th International Workshop on Materials Analysis and Processing in Magnetic Fields, 8 - 11 July, 2014, Okinawa, Japan, invited lecture, p. 2-3.
8.ŠKORVÁNEK, Ivan - MARCIN, Jozef - VARGA, Marek - MAŤKO, Igor - ŠVEC, Peter. Rapidly Quenched Amorphous and Nanocrystalline Bilayer Ribbons for Energy and Sensor Applications. In EMN 2014 : 8th International conference on energy, materials and nanotechnology, 22 - 25 November 2014, Orlando, Florida, invited lecture SS-06, p. 100.
Projekty národných agentúr
Programy: VEGA
1.) Supramolekulárne komplexy proteínov (Supramolecular proteincomplexes)
|Zodpovedný riešiteľ: |Marián Antalík |
|Trvanie projektu: |1.1.2012 / 31.12.2015 |
|Evidenčné číslo projektu: |VEGA2/0025/12 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |UEF SAV: 5637 € |
Dosiahnuté výsledky:
Študovali sme interakcie nanočastíc, iónových kvapalín a molekulových magnetov s biomolekulami. Výsledky sme publikovali v:
J. Parnica, M. Antalík: Urea and guanidine salts as novel components for deep eutectic solvents. In: Journal of Molecular liquids 2014, Vol. 197, s. 23-26
J. Parnica, P. Keša, J. Kováč, M. Timko, M. Antalík: [FeCl4]- Ionic Liquid Based Ferrofluids. In: Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 276-277
E. Valušová, M. Antalík, P. Pristaš, P. Javorský, J. Kováč, M. Timko: Magnetic Charcoal Supporting Silver as a Water Disinfectant. In: Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 226-227
M. Simsikova, J. Cechal, A. Zorkovska, M. Antalik, T. Sikola, Preparation of CuO/ZnO nanocomposite and its application as a cysteine/homocysteine colorimetric and fluorescence detector. In: Colloids and surfaces. B, Biointerfaces, 2014, vol. 123, p. 951-958
2.) Vývoj detektorov kozmických energetických častíc pre vedecké satelity a podpora infraštruktúry kozmických technológií na Ústave experimentálnej fyziky SAV. (Development of space energetic particle detectors for scientific satellites and support of the space technology infrastructure at the Institute of Experimental Physics SAS.)
|Zodpovedný riešiteľ: |Ján Baláž |
|Trvanie projektu: |1.1.2013 / 31.12.2015 |
|Evidenčné číslo projektu: |2/0059/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |VEGA: 6302 € |
Dosiahnuté výsledky:
LU Li, S McKenna-Lawlor, J Balaz, SHI Jiankui, YANG Chuibai, LUO Jing: Technical Configuration and Simulation of NAIS-H for the MIT Mission. Chinese Journal of Space Science. 01/2014; Vol. 34(Issue (3)):341-351.
Zelenyi, L.M.,...,J. Baláž, K. Kudela, I. Strhárský, M. Slivka,...,E. Sarris, T. Sarris, ..., "PLASMA-F" experiment: 3 years of operation on orbit, in Vestnik NPO im. S. A. Lavochkina, No 3, 24, p.12 - 36, 2014, ISSN 2075,
A. A. Petrukovich, T. Inamori, J. Balaz, K. Kudela, I. Strharsky, M. Slivka, V. A. Gladyshev, E.T. Sarris, T.E. Sarris, Oscillations of energetic ions near the Earth's bow shock, submitted to J. Geophys. Res., december 2014.
V marci 2014 bol dokončený a odovzdaný do IWF-Graz posledný model elektronického boxu prístroja PICAM/FS (Letový/záložný, FS = Flight Spare) pre misiu ESA-BepiColombo na planétu Merkúr (predpokladaný štart v 2016).
V oblasti infraštruktúry boli zakúpené viaceré prístroje, náradie a materiály na vývoj a testovanie kozmickej prístrojovej techniky, bola dokončená Faradayova klietka pre EMC testy.
3.) Tenké vrstvy a tenkovrstvové štruktúry pre senzorické a memristívne aplikácie (Thin films and thin film structures for sensoric and memristive applications)
|Zodpovedný riešiteľ: |Marianna Baťková |
|Trvanie projektu: |1.1.2013 / 31.12.2016 |
|Evidenčné číslo projektu: |2/0184/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
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Dosiahnuté výsledky:
I. Batko, M. Batkova, V.H. Tran, V.B. Filipov, U. Keiderling, Evidence for magnetic phase separation in colossal magnetoresistance compound EuB5.99C0.01, Solid State Communications 190 (July 2014), pp. 23
I. Batko, M. Batkova, SmB6:Topological insulator or semiconductor with valence-fluctuation induced hopping transport?, Solid State Communications 196 (October 2014) pp. 18
I.Batko, M. Batkova, F. Lofaj, Electrical Resistivity of CrN Thin Films, Acta Physica polonica A, Vol. 126 (2014) No. 1, 415-416
M.Strečková, M.Baťková, I.Baťko, H.Hadraba, R.Bureš, Imaging of Magnetic Domains and Domain Walls in Spherical Fe-Si Powder Using Magnetic Force Microscopy, Acta Physica Polonica A. 07/2014; 126(1)Acta Physica Polonica Series a (Impact Factor: 0.6). 07/2014; 126(1), 92-93
4.) Modulácia častíc kozmického žiarenia v Heliosfére (Cosmic rays modulation in the Heliosphere )
|Zodpovedný riešiteľ: |Pavol Bobík |
|Trvanie projektu: |1.5.2013 / 31.12.2015 |
|Evidenčné číslo projektu: | 2/0076/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
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Dosiahnuté výsledky:
Zamerali sme sa na vývoj metodiky výpočtu anizotropie príchodu kozmického žiarenia na 1AU v modeli GeoMag96/05. V modeli tvorby sekundárneho kozmického žiarenia prebiehal najmä vývoj modulu pre výpočet miónových spektier v Zemskej atmosfére.
CC publikácie:
Bertaina M., Biktemerova S., Bittermann K., Bobik P., Campana D., Fenu F., Gorgi A., Guarino F., Guzmán A., Higashide K., Medina-Tanco G., Mernik T., Naumov D., Putis M., Rodríguez Frías M. D., Sáez Cano G., Santangelo A., Shinozaki K., Toscano S., Performance and air-shower reconstruction techniques for the JEM-EUSO mission, Advances in Space Research, 53, 10, 1515, 2014
Bertaina M., Bobik P., Fenu F., Shinozaki K., JEM-EUSO observational technique and exposure, Experimental Astronomy, Online First 03/2014, 2014ExA...tmp....9B
Konferenčné príspevky:
Bobik P., Boschini M. J., Della Torre S., Gervasi M., Grandi D., Kudela K., La Vacca G., Mallamaci M., Pensotti S., Putis M., Rancoita P. G., Rozza D., Tacconi M., Transport of cosmic rays in magnetosphere and heliosphere: GeoMag and HelMod webmodels, Astroparticle, Particle, Space Physics and Detectors for Physics Applications - Proceedings of the 14th ICATPP Conference. Edited by GIANI S ET AL. Published by World Scientific Publishing Co. Pte. Ltd., 2014. ISBN #9789814603164, pp. 189-195
Pastircak B., Bobik P., Putis M., Kudela K., Bertaina M., Shinozaki K.,Szabelski J., Modelling of secondary cosmic ray spectra for Solar Cycles 23 and 24, 2014 International Symposium on Future Directions in Ultra High Energy Cosmic Ray Physics, CERN , Switzerland, 18 - 22.august 2014
5.) Mechanické vlastnosti a stabilita amorfných zliatin a nanorozmerných sústav (Mechanical properties and stability of amorphous alloys and nanosized systems)
|Zodpovedný riešiteľ: |Kornel Csach |
|Trvanie projektu: |1.1.2014 / 31.12.2017 |
|Evidenčné číslo projektu: |2/0045/14 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
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Dosiahnuté výsledky:
Ivanisenko Yu., Tabachnikova E.D., Psaruk I.A., Smirnov S.N., Kilmametov A., Kobler A., Kuebel C., Kurmanaeva L., Csach K., Mishkuf J., Scherer T., Semerenko Y.A., Hahn H.: Variation of the deformation mechanisms in a nanocrystalline Pd – 10at. % Au alloy at room and cryogenic temperatures, Int. Journal of Plasticity 60, (2014), pp. 40 – 57.
Hemmati I., Ocelík V., Csach K., J.TH.M. De Hosson: Microstructure and Phase Formation in a Rapidly Solidified Laser-Deposited Ni-Cr-B-Si-C Hardfacing Alloy, Metallurgical and Materials Transactions A, Vol. 45A, (2014), pp. 878 – 892.
Miškuf J., Csach K., Juríková A., Huráková M.: Nanoscale fracture morphologies of soft magnetic CoFeTaB amorphous alloy, Acta Physica Polonica A, Vol. 126, No. 1, (2014), pp. 96 - 97.
Csach K., Miškuf J., Juríková A.: Influence of plastic deformation on devitrification of Fe73.5Nb3Cu1Si13.5B9 amorphous alloy, Acta Physica Polonica A, Vol. 126, No. 1, (2014), pp. 98 - 99.
6.) Vývoj a implementácia algoritmov a metód na štúdium vláknitých objektov použitím spracovania obrazu a matematického modelovania (Development and implementation of algorithms and methods for the study of fiber like objects using image processing and mathematical modeling )
|Zodpovedný riešiteľ: |Erna Demjén |
|Trvanie projektu: |1.1.2014 / 31.12.2016 |
|Evidenčné číslo projektu: | 2/0175/14 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |VEGA: 4201 € |
Dosiahnuté výsledky:
Boli navrhnuté a implementované algoritmy na ohodnotenie morfológie vlákien lyzozymových fibríl zo snímkov AFM.
1. MOCANU, Maria-Magdalena - GANEA, Constanta - SIPOSOVA, Katarina - FILIPPI, Alexandru - DEMJEN, Erna - MAREK, Jozef - BEDNARIKOVA, Zuzana - ANTOSOVA, Andrea - BARAN, Irina - GAZOVA, Zuzana, Polymorphism of hen egg white lysozyme amyloid fibrils influences the cytotoxicity in LLC-PK1 epithelial kidney cells, International Journal of Biological Marcomolecules, 2014, vol.65, pp. 176-187
7.) Supravodivá a magnetokalorická keramika s perovskitovou štruktúrou (Superconducting and magnetocaloric ceramics with perovskite structure)
|Zodpovedný riešiteľ: |Pavel Diko |
|Trvanie projektu: |1.10.2013 / 31.12.2015 |
|Evidenčné číslo projektu: |2/0090/2013 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
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Dosiahnuté výsledky:
Boli študovaný vplyv vysokotlakej oxidácie YBaCuO masívnych monokryštalických supravodičov na ich štruktúru a supravodivé vlastnosti. Ukázali sme, že vysokotlakou oxidáciou je možné až 40-násobné skrátenie času oxidácie. Metódami elektrónovej mikroskopie, termickej analýzy, hmotnostnej spektroskopie a Roentgenovej fotoemisnej spektroskpie sme študovali reakciu YBaCuO masívneho monokryštalického supravodiča s ovzduším. Pripravili sme vzorky magnetokalorických manganitov typu LaSrCaMnO s rôznou prechodovou teplotou a študovali ich štruktúru a magnetické vlastnosti po vysokotlakej oxidácii.
1. P. Diko, Cracking caused by thermal and transformation stresses in YBCO composite superconductors, Int. J. of Materials and Product Technology, 2014 Vol. 49 No. 2/3, 97-129, Special Issue on Advanced Composite Materials Design and Optimisation.
2. K. Zmorayova, V. Antal, S. Piovarči, M. Radušovská, J. Kováč, P. Diko, Microstructure and Properties of La-Ca-Sr-Mn-O Magnetocaloric Ceramics, Acta Physica Polonica, Vol. 126, No. 1, 2014, 168 - 169.
3.S. Piovarči, V. Antal, M. Kaňuchová, M. Radušovská, P. Diko, Changes in YBCO singlegrain bulk superconductor exposed to air moisture, Acta Physica Polonica, Vol. 126, No. 1, 2014, 364 - 365.
4. Prihláška vynálezu PP 00067-2014 "YBCO supravodičov spracovaný vysokotlakou oxidáciou“ (autori: P. Diko, S. Piovarči, V. Antal)
8.) Teoretické štúdium kooperatívnych javov v silne korelovaných elektrónových a spinových systémoch (Theoretical study of cooperative phenomena in strongly correlated electron and spin systems.)
|Zodpovedný riešiteľ: |Pavol Farkašovský |
|Trvanie projektu: |1.1.2013 / 31.12.2015 |
|Evidenčné číslo projektu: |2/0077/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
9.) Štúdium stability a agregácie natívne rozbalených proteínov (Study of the intrinsically disordered protein stability and aggregation)
|Zodpovedný riešiteľ: |Diana Fedunová |
|Trvanie projektu: |1.1.2014 / 31.12.2017 |
|Evidenčné číslo projektu: |2/0176/14 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |VEGA: 5740 € |
Dosiahnuté výsledky:
Študovali sme vplyv iónových kvapalín s rôznym typom katiónov na kinetiku a morfológiu lyzozýmových fibríl. Zistili sme, že IL s kozmotrópnym aj chaotrópnym katiónom indukujú tvorbu fibríl v podmienkach s nízkou koncentráciou proteínu. Odlišný charakter katiónu sa prejavuje na kinetike fibrilizácie, kozmotrópny katión znižuje zastúpenie beta-listov v štruktúre fibríl, zvyšuje agregačnú konštantu, predlžuje "lag" fázu procesu v porovnaní s chaotrópnym katiónom.
Z obrazovej analýzy AFM obrázkov sme stanovili distribúciu výšok fibríl a zastúpenie jednotlivých typov fibríl s rôznym fibrilizačným profilom určeným na základe hierarchického modelu fibrilizácie. V prítomnosti chaotrópnych katiónov vznikajú fibrily s maximálnou výškou do 20 nm so 4mi výraznými populáciami fibrilizačných profilov, s výraznou populáciou fibríl tvaru 8+8 (8 protofilamentov tvorených z 8 protofibríl). V prítomnosti kozmotrópnych katiónov vznikajú fibrily s maximánou výškou do 15nm, populácia tvarov je menej diferencovaná, najpočetnešou skupinou sú fibrily tvaru 1+1 a 4+1. Zložitejšie kompozície typu 8+8 nie sú vôbec prítomné.
Dôkladné preskúmanie podmienok indukujúcich tvorbu polymorfných fibríl umožní prípravu fibríl definovaných profilov čo je veľmi dôležité pre potenciálne využitie fibríl ako nových biomateriálov, ako aj pri hľadaní efektívnych liečiv amyloidných ochorení.
FEDUNOVA, Diana – Antošová, Andrea – BÁGEĽOVÁ, Jaroslava – MAREK, Jozef – Demjén, Erna – GAŽOVÁ, Zuzana. Imidazolium-based ionic liquids as amyoloid-inducers of lysozyme fibrils. In Program and Abstracts: VI. Slovak Biophysical Symposium, 11. – 13. 3., 2014, Martin, Slovakia : UK Bratislava, Jeseniova LF v Martine, poster PO4, p. 22-23. ISBN: 978-80-89544-67-7.
FEDUNOVA, Diana – Antošová, Andrea – MAREK, Jozef – Demjén, Erna – – BÁGEĽOVÁ, Jaroslava - GAŽOVÁ, Zuzana. Imidazolium-based ionic liquids as triggers of lysozyme amyloid fibrillization In program _abstracts.htm,2014 International Biophysics Congress IUPAB, August 3-7, 2014, Brisbane, Australia, Poster P354, p64/126.
10.) Kvantové fázové prechody. Vplyv chemického a hydrostatického tlaku na vybrané boridy vzácnych zemín. (Quantum phase transitions. Influence of chemical and hydrostatic pressure on selected rare earth borides.)
|Zodpovedný riešiteľ: |Slavomír Gabáni |
|Trvanie projektu: |1.1.2013 / 31.12.2015 |
|Evidenčné číslo projektu: |VEGA 2/0106/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
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Dosiahnuté výsledky:
V roku 2014 bolo pripravených a publikovaných 12 karentovaných článkov, ktoré súvisia s experimentálnym štúdiom boridov vzácnych zemín v extrémnych podmienkach [1-10] a skúmaním QHE na tenkých vrstvách na báze Ge [11, 12]. Dve publikácie boli zaslané do karentovaných časopisov [13, 14]. Niektoré z výsledkov boli prezentované na konferenciách SCES´14 (7.-11.7.2014, Grenoble), ATOMS´14 (30.7.-4.8.2014, Bariloche), LT´27 (6.-13.2014, Buenos Aires) a ISBB´14 (31.8.-5.9.2014, Hawaii).
[1] Gabáni S., Takáčová I., Pristáš G., Gažo E., Flachbart K., Mori T., Braithwaite D., Míšek M., Kamenev K.V., Hanfland M., Samuely P.: High-pressure effect on the superconductivity of YB6, Physical Review B 90 (2014) 045136
[2] Čurlík I., Giovannini M., Sereni J.G., Zapotoková M., Gabáni S., Reiffers M.: Extremly high density of magnetic excitations at T=0 in YbCu5-xAux, Physical Review B 90 (2014) 224409
[3] Sluchanko N.E., Azarevich A.N., Anisimov M.A., Bogach A.V., Voronov V.V., Gavrilkin S.Yu., Glushkov V.V., Demishev S.V., Kuznecov A.V., Micen K.V., Filippov V.B., Shitsevalova N.Yu., Gabáni S., Flachbart K.: Features of the formation of magnetic moments of Tm3+ and Yb3+ rare-earts ions in LuB12 cage glass, Journal of Experimental and Theoretical Physics Letters 100 (2014) 470-476
[4] Pristáš G., Gabáni S., Flachbart K., Filipov V., Shitsevalova N.: Investigation of the energy gap in Sm1-xB6 and Sm1-xLaxB6 Kondo Insulators, Journal of the Physical Society of Japan Conference Proceedings 3 (2014) 012021-1-6
[5] Nishiyama K., Mito T., Pristáš G., Hara Y., Koyama T., Ueda K., Kohara T., Akahama Y., Gabáni S., Reiffers M., Flachbart K., Fukazawa H., Kohori Y., Takeshita N., Shitsevalova N.: NMR investigation of pressure effect on intermediate valence compound SmB6, Journal of the Physical Society of Japan Conference Proceedings 3 (2014) 011085-1-6
[6] Gabáni S., Flachbart K., Bednarčík J., Welter E., Filipov V., Shitsevalova N.: Investigation of mixed valence state of Sm1-xB6 and Sm1-xLaxB6 by XANES, Acta Physica Polonica A 126 (2014) 338-339
[7] Gabáni S., Pristáš G., Takáčová I., Flachbart K., Filipov V., Shitsevalova N., Siemensmeyer K.: Magnetic phase diagram of TmB4 under high pressure, Acta Physica Polonica A 126 (2014) 356-357
[8] Sluchanko N.E., Azarevich A.N., Bogach A.V., Glushkov V.V., Demishev S.V., Gavrilkin S.Yu., Gabáni S., Flachbart K., Shitsevalova N.Yu., Filipov V.B., Vanacken J., Moshchalkov V.V., Stankiewicz J.: Magnetoresistance anisotropy and magnetic H-T phase diagram of Tm0,996Yb0,004B12, Acta Physica Polonica A 126 (2014) 332-333
[9] Anisimov M., Bogach A., Glushkov V., Demishev S., Samarin N., Gavrilkin S., Mitsen K., Shitsevalova N., Levchenko A., Filippov V., Gabáni S., Flachbart K., Sluchanko N.: Defect mode in LaB6, Acta Physica Polonica A 126 (2014) 350-351
[10] Anisimov M., Bogach A., Glushkov V., Demishev S., Samarin N., Shitsevalova N., Levchenko A., Filippov V., Kuznetsov A., Flachbart K., Sluchanko N.: Hall effect in GdB6, Acta Physica Polonica A 126 (2014) 348-349
[11] Mironov O.A., Hassan A.H.A., Moris R.J.H., Dobbie A., Uhlarz M., Chrastina D., Hague J.P., Kiatgamolchai S., Beanland R., Gabáni S., Berkutov I.B., Helm M., Drachenko O., Myronov M., Leadley D.R.: Ultra high hole mobilities in a pure strained Ge quantum well, Thin Solid Films 557 (2014) 329-333
[12] Mironov O.A., Hassan A.H.A., Uhlarz M., Kiatgamolchai S., Dobbie A., Morris R.J.H., Halpin J.E., Rhead S.D., Allred P., Myronov M., Gabani S., Berkutov I.B., Leadley D.R.: New RP-CVD grown ultra-high performance selectively B-doped pure-Ge 20 nm QWs on (100)Si as basis material for post-Si CMOS technology, Physica Status Solidi C 11 (2014) 61-64
[13] Sluchanko N.E., Khoroshilov A.L., Anisimov M.A., Azarevich A.N., Bogach A.V., Glushkov V.V., Demishev S.V., Krasnorussky V.N., Voronova N.Yu., Shitsevalova N.Yu., Filippov V.B., Levchenko A.V., Pristas G., Gabani S., Flachbart K.: Charge transport in HoxLu1-xB12: Separating positive and negative magnetoresistance in metals with magnetic ions, arXiv.1412.0497
[14] Gabáni S., Pristáš G., Takáčová I., Sluchanko N., Siemensmeyer K., Shitsevalova N., Filipov V., Flachbart K.: Surface and bulk components of electrical conductivity in (presumably special topological) Kondo insulator SmB6 at lowest temperatures, arXiv.1407.5771
11.) Inhibitors of protein amyloid aggregation (Inhibitors of protein amyloid aggregation)
|Zodpovedný riešiteľ: |Zuzana Gažová |
|Trvanie projektu: |1.1.2013 / 31.12.2016 |
|Evidenčné číslo projektu: |2/0181/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
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Dosiahnuté výsledky:
Polymorfizmus amyloidných fibríl môže zodpovedať za variabilitu syndrómov amyloidných ochorení a jeho štúdium je dôležité pre pochopenie molekulárnych mechanizmov vedúcich k vzniku týchto ochorení. Štruktúrne charakteristiky amyloidných fibríl vytvorených za rôznych experimentálnych podmienok (kyslé a neutrálne pH)boli sledované pomocou spektroskopických metód, atómovej silovej mikroskopie, obrazovej analýzy a SAXS. Analýza morfológie fibríl potvrdila štruktúrnu rozdielnosť vytvorených agregátov, rozdiely boli pozorované v dĺžke, výške a diametri fibríl. Predpokladáme, že polymorfizmus je dôsledkom rozdielneho usporiadania molekúl lyzozýmu v rámci amyloidnej štruktúry ako aj rozdielneho obsahu štruktúry beta skladaného listu.
MOCANU et al. Polymorphism of hen egg white lysozyme amyloid fibrils influences the cytotoxicity in LLC-PK1 epithelial kidney cells. In International Journal of Biological Macromolecules, 2014, vol. 65, p. 176-187.
Petrenko et al. Structure of amyloid aggregates of lysozyme from small-angle X-ray scattering data, Physics of the solid state, 2014, 56, 129-133.
12.) Štúdium vlastností turbulentných prostredí s narušenými symetriami ((Study of properties of turbulent environments with symmetry breaking)
|Zodpovedný riešiteľ: |Marián Jurčišin |
|Trvanie projektu: |1.1.2013 / 31.12.2016 |
|Evidenčné číslo projektu: |2/0093/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |3 - Rusko: 3 |
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Dosiahnuté výsledky:
Metódami kvantovej teórie poľa bol študovaný vplyv narušenia zrkadlovej symetrie (priestorovej parity) na turbulentné vektorové Prandtlovo číslo v modeli pasívnej vektorovej prímesi advektovanej Navier-Stokesovým turbulentným prostredím. Bolo ukázané, že difúzne procesy pasívnych polí v turbulentných prostrediach s narušenou zrkadlovou symetriou silne závisia od ich vnútornej tenzorovej štruktúry.
E. Jurčišinová, M. Jurčišin, and P. Zalom: Turbulent Prandtl number of a passively advected vector field in helical environment: Two-loop renormalization group result, Phys. Rev. E 89, 043023 (2014)
13.) Supravodiče s nekonvenčným párovaním (Superconductors with non-conventional pairing)
|Zodpovedný riešiteľ: |Jozef Kačmarčík |
|Trvanie projektu: |1.1.2013 / 31.12.2015 |
|Evidenčné číslo projektu: |2/0135/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |7 - Belgicko: 1, Česko: 1, Nemecko: 1, Španielsko: 1, Francúzsko: 2, USA: 1 |
|Čerpané financie: |VEGA: 18646 € |
Dosiahnuté výsledky:
S. Gabáni, I. Takáčová, G. Pristaš, E. Gažo, K. Flachbart, T. Mori, D. Braithwaite, M. Misek, K.V. Kamenev, M. Hanfland, and P. Samuely:
High-pressure effect on the superconductivity of YB6,
Phys. Rev. B 90, 045136 (2014).
M. Sindler, R. Tesar, J. Kolacek, P. Szabo, P. Samuely, V. Haskova, C. Kadlec, F. Kadlec, P. Kuzel:
Far-infrared electrodynamics of thin superconducting NbN film in magnetic fields
Supercond. Sci. Technol. 27 055009 (2014).
J. Kačmarčík, Z. Pribulová, V. Paľuchová, P. Husaníková, G. Karapetrov, V. Komanický, P. Samuely:
Specific Heat Study of Superconductivity in Cu0.061TiSe2
Acta Physica Polonica 126, 322 (2014).
Z. Pribulová, Z. Medvecká, J. Kačmarčík, V. Komanický, T. Klein, P. Husaníková, V. Cambel, J. Šoltýs, G. Karapetrov, P. Samuely,
Local Magnetometry of Cu0.064TiSe2
Acta Physica Polonica 126, 370 (2014).
S. Gabáni, G. Pristáš, I. Takáčová, K. Flachbart, E. Gažo, T. Mori, D. Braithwaite, P. Samuely,
Influence of Pressure on Superconductivity in YB6
Acta Physica Polonica 126, 340 (2014).
G. Pristáš, S. Gabáni, M. Orendáč, V. Komanický, E. Gažo,
Study of Niobium Thin Films under Pressure
Acta Physica Polonica 126, 346 (2014).
P. Szabó, P. Neilinger, M. Trgala, M. Grajcar, P. Samuely,
Superconductivity Near Transition to Insulating State in MoC Ultrathin Films Studied by Subkelvin STM
Acta Physica Polonica 126, 368 (2014).
14.) Štrukturalizačné javy v samousporiadajúcich štruktúrach proteínov ovplyvňované nanočasticami (Structure-forming phenomena in self-assembly structures of proteins influenced by nanoparticles)
|Zodpovedný riešiteľ: |Martina Koneracká |
|Trvanie projektu: |1.1.2012 / 31.12.2015 |
|Evidenčné číslo projektu: |2/0041/12 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Magnetitové nanočastice boli pripravované pomocou popísaného experimentálneho postupu (chemickou koprecipitáciou). Následne boli stéricky stabilizované surfaktantom - oleátom sodným, čím vznikla základná vodná magnetická kvapalina,ktorá bola štandardne charakterizovaná z hľadiska rozmerovej distribúcie a koloidnej aj teplotnej stability dostupnými metódami – metódou dynamického rozptylu svetla (DLS), resp. elektroforetického rozptylu svetla (ELS) pomocou prístroja Zetasizer Nano ZS, prípadne diferenciálnou centrifugačnou sedimentáciou (DCS) pomocou diskovej centrifúgy. Vybrané vzorky boli študované z hľadiska morfológie pomocou elektrónovej mikroskopie (skenovacej a transmisnej). Analýzou snímok bola tiež získaná rozmerová distribúcia častíc. Výsledky boli opublikované v:
[1] M. Kubovciková, I. Antal, J. Kováč, V. Závišová, M. Koneracká, P.Kopčanský:Preparation and Complex Characterization
of Magnetic Nanoparticles in Magnetic Fluid. ACTA PHYSICA POLONICA A, vol.126 (2014) 268.
Boli pripravené a komplexne charakterizované magnetické kvapaliny s rôznou modifikáciou (napr. Dextrán, BSA, PEG a PVP /polyvinylpyrolidon/) za účelom pripraviť biokompatibilnú magnetickú kvapalinu pre biomedicínske aplikácie. Sledoval sa nielen vplyv typu modifikačnej látky ale aj vplyv rôznej molekulovej hmotnosti danej modifikačnej látky na cytotoxicitu pripravených vzoriek. Cytotoxicita sa sledovala na 2 bunkových kultúrach: na nádorových B16 a na zdravých škrečkových bunkových líniach V79. Z výsledkov publikovaných v práci najlepšie výsledky vykazovala MK modifikovaná BSA, ktorej výsledky cytotoxicity boli 10 násobne vyššie v porovnaní so základnou kvapalinou (vid obr. 8). Avšak najväčšie rozdiely v hodnotách cytotoxicity meranej na nádorových a zdravých bunkách vykazovali MK modifikované PEG 400 a PEG 1000. Preto spomínané MKPEG400 a MKPEG1000 sú najvhodnejšie pre ich ďalšie využitie v liečbe rnádorových ochorení.
Výsledky sú publikované v práci, ktorá vyjde v roku 2015:
[2] V.Zavisova, M.Koneracka, J.Kovac, M.Kubovcikova, I.Antal,
P.Kopcansky, M.Bednarikova, M.Muckova: The cytotoxicity of ironoxide nanoparticles with different modifications evaluated in vitro. Journal of Magnetism and Magnetic Materials.
Podarilo sa naviazať antihypertenzívne liečivo Aliskirén do magneticky značených polymérnych nanosfér a sledovať vplyv naviazaného liečiva na krvný tlak potkanov. Boli pripravené série vzoriek jednak s rôznu koncentráciou liečiva a magnetitu v polymérnych nanosférach za účelom stanoviť optimálnu koncentráciu uzavretého liečiva ako aj magnetitu. Na základe doterajších experimentálnych výsledkov možno predpokladať, že aliskirén uzatvorený do polymérnej matrice je účinnejší pri znižovaní krvného tlaku než neuzatvorený, a predstavuje potenciálne nový prístup v liečbe hypertenzie.
Doterajšie získané výsledky sú prezentované v publikácii, ktorá vyjde v roku 2015:
[3] I.Antal, M.Kubovcikova, V.Zavisova, M.Koneracka, O.Pechanova,
A.Barta, M.Cebova, V.Antal, P.Diko, M.Zduriencikova, M.Pudlak, P.Kopcansky:
Magnetic poly(D,l-lactide) nanoparticles loaded with aliskiren: A promising tool for hypertension treatment. Journal of Magnetism and Magnetic Materials.
Magnetoferitín bol charakterizovaný pomocou dynamického rozptylu svetla, transmisnej elektrónovej mikroskopie, SQUID magnetometra a malouhlového rozptylu neutrónov. Ukázalo sa, že superparamagnetické jadro magnetoferitínu o priemernej veľkosti 5 nm má značný vplyv na štruktúru proteínu. Hydrodynamický priemer magnetoferitínu získaný pomocou dynamického rozptylu svetla bol väčší ako pre natívny apoferitín, čo naznačuje koloidnú polydisperzitu. Vysledky su prezentovane v praci:
[4] L. Melníková, Z. Mitróová, M. Timko, J. Kováč, M. V. Avdeev, V. I. Petrenko, V. M. Garamus, L. Almasy, P. Kopčanský. Structural characterizaiton of magnetoferritin. In Mendeleev commnications, 2014, vol. 24, p. 80-81.
Malouhlový rozptyl fotónov (SAXS) a neutrónov (SANS) bol aplikovaný na štúdium magnetoferitínu s rôznymi loading faktormi (LF - počet atómov Fe na jednu biomakromolekulu), pričom ab initio analýzy SAXS dát ukázali že štruktúra proteínu je narušená už pri LF 160. Prvýkrát v tejto práci bola aplikovaná SANS metóda variácie kontrastu, ktorej výsledkom bol posun „match pointu“ magnetoferitínu s rastom LF. Polydisperzita bola tiež funkciou LF a veľkosti magnetických nanočastíc. Gyračný polomer získaný pomocou Guinierovej aproximácie zo SAXS a SANS dát a hydrodynamický priemer získaný dynamickým rozptylom svetla sa zvyšoval s LF magnetoferitínu a výrazná agregácia bola pozorovaná pri LF 600 a vyššie.
[5] L. Melníková, V.I. Petrenko, M.V. Avdeev, V.M. Garamus, L. Almásy, O.I. Ivankov, L.A. Bulavin, Z. Mitróová, P. Kopčanský. Effect of iron oxide loading on magnetoferritin structure in solution as revealed by SAXS and SANS. In Colloids and Surfaces B: Biointerfaces, in press.
15.) Citlivosť kvapalných kryštálov s nanočasticami na vonkajšie magnetické pole (Sensitivity of liquid crystals containing nanoparticles to external magnetic field)
|Zodpovedný riešiteľ: |Peter Kopčanský |
|Trvanie projektu: |1.1.2013 / 31.12.2016 |
|Evidenčné číslo projektu: |2/0045/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Študovali sme vplyv elektrického a magnetického poľa na usporiadanie molekúl feronematika na báze termotropného nematického kvapalného kryštálu 6CHBT dopovaného tyčinkovými a retiazkovými magnetickými nanočasticami. Výsledky štúdia ukázali, že kombinácia elektrického a magnetického poľa výrazne ovplyvňuje charakter fázového prechodu a zvyšuje citlivosť kvapalných kryštálov na magnetické pole. Ďalšie experimenty boli zamerane na štúdium vplyvu tvarovej a anizotrópie magnetických nanočastíc na teplotu prechodu z izotropnej do nematickej fázy. Boli pripravene feronematika na baze kvapalného kryštálu 6CHBT s magnetickými nanočasticami sférickými a dvoma typmi tyčinkových nanočastic. Vplyv tvaru častíc na fázový prechod z izotropnej do nematickej fázy bol študovaný dvoma metodikami - polarizačným mikroskopom a dielektrickými meraniami. Namerane výsledky ukázali, že v prípade dopovania sférickými magnetickými nanočasticami s rastúcou objemovou koncentráciou nanočastic teplota fázového prechodu z izotropnej do nematickej fázy klesá. V prípade dopovania tyčinkovými magnetickými nanočasticami bol pozorovaný nárast teploty fázového prechodu z izotropnej do nematickej fázy.
1.N. Tomašovičová, M. Timko, V. Závišová, A. Hasim, J. Jadzyn, X. Chaud, E. Beaugnon, P. Kopčanský. Thephasetransitions in liquidcrystaldopedwithmagneticparticles of differentshapes in combinedelectric and magneticfields. Int. J. Thermophys. DOI 10.1007/s10765-014-1622-4.
2.V. Gdovinová, N. Tomašovičová, N. Éber, T. Tóth-Katona, V. Závišová, M. Timko, P. Kopčanský. Influence of theanisometry of magneticparticles on theisotropic-nematicphasetransition. Liquid Crystals, 2014, vol. 41(12), p. 1773-1777. DOI: 10.1080/02678292.2014.950615
16.) Vplyv interakcie feromagnetických častíc na báze železa na magnetické vlastnosti kompozitných materiálov
|Zodpovedný riešiteľ: |Jozef Kováč |
|Trvanie projektu: |1.1.2012 / 31.12.2015 |
|Evidenčné číslo projektu: |1/0861/12 |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: |Prírodovedecká fakulta UPJŠ |
|Počet spoluriešiteľských inštitúcií: |8 - Česko: 2, Nemecko: 3, Poľsko: 3 |
| | |
Dosiahnuté výsledky:
Adriana Zeleňáková, Vladimir Zeleňák, Stefan Michalík, Jozef Kováč, and Mark W. Meisel, Structural and magnetic properties of CoO-Pt core-shell nanoparticles. In PHYSICAL REVIEW B 89, 104417 (2014)
VARGA, Lajos K. - KOVÁČ, Jozef. Minor Loop Scaling Rules for Finemet Type Soft Magnetic Cores. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 156-157. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1898-794X.Typ: ADCA
HRUBOVČÁK, Pavol - ZELEŇÁKOVÁ, Adriana - ZELEŇÁK, Vladimír - KOVÁČ, Jozef. Superparamagnetism in Cobalt Nanoparticles Coated by Protective Gold Layer. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 216-217. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1898-794X.Typ: ADCA
ZELEŇÁKOVÁ, Adriana - KOVÁČ, Jozef - ZELEŇÁK, Vladimír. AC Magnetic Susceptibility Study of Fe and Co Based Nanoparticles. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 222-223. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1898-794X.Typ: ADCA
NOVÁK, Ladislav - KOVÁČ, Jozef. Rayleigh Region in Amorphous and Nanocrystaline FINEMET Alloy. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 126-127. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1898-794X.Typ:ADCA
KOSTOVA, Nina G. - ZORKOVSKÁ, Anna - KOVÁČ, Jozef - VELINOV, N. - BALÁŽ, Peter. Magnetic Properties of Mechanochemically Synthesized Mixed Oxides. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 411-412. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1898-794X.Typ: ADCA
KUBOVČÍKOVÁ, Martina - ANTAL, Iryna - KOVÁČ, Jozef - ZÁVIŠOVÁ, Vlasta - KONERACKÁ, Martina - KOPČANSKÝ, Peter. Preparation and Complex Characterization of Magnetic Nanoparticles in Magnetic Fluid. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 268-269. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1898-794X.Typ: ADCA
TOMAŠOVIČOVÁ, Natália - HAYSAK, Ivan - KOVÁČ, Jozef - KUBOVČÍKOVÁ, Martina - ZÁVIŠOVÁ, Vlasta - TIMKO, Milan - OKUNEV, Alexander - ZORKOVSKÁ, Anna - KOPČANSKÝ, Peter. Radiation Stability of the BSA Modified Biocompatible Magnetic Fluid. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 262-263. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1898-794X.Typ: ADCA
ZMORAYOVÁ, Katarína - ANTAL, Vitaliy - RADUŠOVSKÁ, Monika - PIOVARČI, Samuel - KOVÁČ, Jozef - KAVEČANSKÝ, Viktor - DIKO, Pavel. Microstructure and Magnetic Properties of La-Ca-Sr-Mn-O Perovskite Ceramics. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 168-169. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1898-794X.Typ: ADCA
17.) Vývoj nových metód zberu a spracovania dát v distribuovanom experimentálnom prostredí v reálnom čase (Development of novel real time methods of acquisition and data analysis in distributed experimental environment)
|Zodpovedný riešiteľ: |Ivan Králik |
|Trvanie projektu: |1.1.2013 / 31.12.2015 |
|Evidenčné číslo projektu: |2/0082/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |VEGA: 3043 € |
Dosiahnuté výsledky:
ALICE Collaboration (... P. Kaliňák, ..., I. Králik, ..., M. Krivda, ..., J. Mušinský, ..., L. Šándor, ..., M. Vaľa), Measurement of visible cross sections in proton-lead collisions at ?sNN = 5.02 TeV in van der Meer scans with the ALICE detector, JOURNAL OF INSTRUMENTATION 9 (2014) P11003
18.) Variácie nízkoenergetického kozmického žiarenia a supratermálnych kozmických častíc: súvislosti s efektami kozmického počasia
|Zodpovedný riešiteľ: |Karel Kudela |
|Trvanie projektu: |1.1.2013 / 31.12.2015 |
|Evidenčné číslo projektu: |2/0040/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Boli publikované, resp. na medzinárodných konferenciách prezentované niektoré nové poznatky o kozmickom žiarení a energetických kozmických časticiach vo vzťahu ku kozmickému počasiu. Uvedené sú publikácie
a pozvané prednášky v zahraničí, resp. prednášky prezentované riešiteľmi úlohy.
1. Kancirova M., Kudela K., Cloud cover and cosmic ray variations at Lomnicky stit high altitude observing site,
Atmosheric Research, 149, 166, 173, 2014
2. Firoz K.A., Zhang Q.M., Gan W. Q., Li Y.P., Rodriguez-Pacheco J., Moon Y.J., Kudela K., Park Y.D., Dorman L.I., An interpretation of GLE71 concurent CME-driven shock wave, Astrophysical Journal Supplement Series, 213,2, 24, 2014
3. Kubancak J., Ambrozova I., Buetikofer R., Kudela K., Langer R., Davidkova M., Ploc O., Malusek A., Liulin silicon semiconductor spectrometers as cosmic ray monitors at the high mountain observatories Jungfraujoch and Lomnicky stit, Journal of Instrumentation, 9, P07018, 2014
4. Zigman V., Kudela K., Grubor D., Response of the Earth's lower ionosphere to the Ground Level Enhancement event of December 13, 2006, Advances in Space Research, 53, 5, 763, 775, 2014
5. Kancírová M., Kudela K. (2014) The Relationship between Suicide Incidents in Slovakia and the Czech Republic
and Heliophysical Parameters: Empirical Results. Astrobiol Outreach 2:116. doi: 10.4172/2332-2519.1000116
6. Kuznetsov S.N., Bogomolov A.V., Galkin V.I., Denisov Yu. I., Podorolsky A.N., Ryumin S.P., Kudela K., Rojko J., Scientific Set of Instruments "Solar Cosmic Rays", in The Coronas-F Space Mission, Astrophysics and Space
Science Library, Volume 400. ISBN 978-3-642-39267-2.
Springer-Verlag Berlin Heidelberg, 2014, p. 337, 400, 289 - 299, 2014
7. Kuznetsov S.N., Kurt V.G., Yushkov B.Yu., Myagkova I.N., Galkin V.I., Kudela K., Protons Acceleration in Solar Flares: The Results of the Analysis of Gamma-emission and Neutrons Recorded by the SONG Instrument Onboard the CORONAS-F Satellite, in The Coronas-F Space Mission, Astrophysics and Space Science Library, Volume 400. ISBN 978-3-642-39267-2.
Springer-Verlag Berlin Heidelberg, 2014, p. 337, 400, 301 -325, 2014
8. Kuznetsov S.N., Myagkova I.N., Muravieva E.A., Yushkov, B.Yu., Starostin L.I., Denisov Yu.I., Kudela, K., Dynamics of the Relativistic Electrons Flux of the Earth Outer Radiation Belt Based on the MKL Instrument Data, 400, 327-336, 2014
9. Kuznetsov S.N., Denisov Yu.I., Lazutin L.L., Myagkova I.N., Muravieva E.A., Yushkov B.Yu., Kudela K., Bucik R., Slivka, M., Dynamics of the Earth Radiation Belts During the Strong Magnetic Storms, in The Coronas-F Space Mission, Astrophysics and Space Science Library, Volume 400. ISBN 978-3-642-39267-2. Springer-Verlag Berlin Heidelberg, 2014, p. 337400, 337-347, 2014
10. Kudela, K. On Quasi-Periodic Variations of Low Energy Cosmic Rays Observed Near Earth, 8th International Conference on High Levels of Natural Radiation and Radon Areas (8ICHLNRRA), 1 - 5 September 2014, Prague, Czech Republic
11. Karel Kudela, Quasi-periodic variations of low energy cosmic
rays, SCOSTEP's 13th Quadrennial Solar-Terrestrial Physics Symposium (STP13), October 12 – 18, 2014, Xi'An, Shanxi, China
12. Parnahaj, I. and K. Kudela, Forbush decreases, geomagnetic storms and interplanetary structures, in WDS'14 Proceedings of Contributed Papers — Physics (eds. J. Safrankova and J. Pavlu), Prague, Matfyzpress, pp. 310–315, 2014.
19.) Progresívne amorfné a nanokryštalické magneticky mäkké zliatiny pre aplikácie v energetike a magnetickom chladení (Progressive amorphous and nanocrystalline soft magnetic alloys for energy and magnetic cooling applications)
|Zodpovedný riešiteľ: |Jozef Marcin |
|Trvanie projektu: |1.1.2013 / 31.12.2015 |
|Evidenčné číslo projektu: |2/0192/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |VEGA: 7619 € |
Dosiahnuté výsledky:
V druhom roku riešenia projektu sme pokračovali vo výskume vplyvu mikroštruktúry na magnetické, magnetoimpedančné a magnetokalorické vlastnosti amorfných a nanokryštalických magneticky mäkkých rýchlochladených zliatin na báze Fe, Co a vybraných vzácnych zemín. V oblasti štúdia magnetokalorických vlastností rýchlochladených zliatin na báze RE-Co-Fe sme nadviazali na predchádzajúce výsledky [1] a zamerali sme sa na vplyv dopovania amorfnej zliatiny GdFeCoAl prvkami Al, Si a B [2]. V systéme LaFeCoSiAl sme sa zaoberali koreláciou medzi chemickým zložením, mikroštrukúrou a magnetokalorickými vlastnosťami, s cieľom optimalizovať hodnoty chladiaceho výkonu (RCP) a refrigeračnej kapacity (RC) [3]. Rozšírili sme spektrum skúmaných viacvrstvových rýchlochladených kovových zliatin. Venovali sme sa vplyvu teploty na magnetizačné procesy vo dvojvstvových amorfných zliatinách FeSiB/CoSiB [4] a vplyvu tepelného spracovania v magnetickom poli na magnetoimpedančné vlastnosti amorfných a nanokryštalických jednovrstvových i dvojvrstvových zliatin typu FeNiNbB [5].
1. Zbigniew Sniadecki , Jozef Marcin, Ivan Škorvánek, Natalia Pierunek, Bogdan Idzikowski, Glassy state formation and magnetic properties of Co-rich ternary RE–Co–B (RE = Y, Tb, Ho) amorphous alloys, Journal of Alloys and Compounds 584 (2014) 477–482.
2. Natalia Pierunek, Zbigniew Sniadecki, Jozef Marcin, Ivan Škorvánek, and Bogdan Idzikowski, Magnetocaloric Effect of Amorphous Gd65Fe10Co10Al10X5, (X = Al, Si, B) Alloys, IEEE TRANSACTIONS ON MAGNETICS, VOL. 50, NO. 11, NOVEMBER 2014, 2506603.
3. P. Gebara, P. Pawlik, I. Skorvanek, J. Marcin, K. Pawlik, A. Przybyl, J.J. Wyslocki, M. Szwaja, K. Filipecka, Thermomagnetic Properties of LaFe11.0Co0.8(Si1-xAlx)1.2 (x = 0, 0.6) Alloys, ACTA PHYSICA POLONICA A 126 (2014) 166 – 167.
4. M. Capik, P. Švec, J. Marcin, J. Kováč, M. Sopko, D. Janičkovič, P. Švec sr., I. Škorvánek, Effect of Temperature on Magnetization Processes in Amorphous Rapidly Solidified FeSiB/CoSiB Bilayer Ribbons, ACTA PHYSICA POLONICA A 126 (2014) 120 – 121.
5. M. Varga, J. Marcin, M. Capik, D. Janičkovič, P. Švec, I. Škorvánek, Magnetoimpedance Effect in Field Annealed (FeNi)78Nb7B15 Amorphous and Nanocrystalline Bilayer Ribbons, ACTA PHYSICA POLONICA A 126 (2014) 122 – 123.
20.) Silne korelované elektrónové systémy na báze oxidov 3d kovov a lantanidov (Strongly correlated electron systems based on oxides of 3d metals and lanthanides)
|Zodpovedný riešiteľ: |Marián Mihalik |
|Trvanie projektu: |1.1.2013 / 31.12.2015 |
|Evidenčné číslo projektu: |2/0178/13 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |VEGA: 11874 € |
Dosiahnuté výsledky:
[1]Mihalik, M., Maťaš, S., Vavra, M., Briančin, J., Mihalik, M., Fitta, M., Kavečanský, V., Kopeček, J., Preparation of NdMn1 - xFexO3 +? single crystals - Effect of preparation atmosphere and iron doping, Journal of Crystal Growth
Volume 401, 1 September 2014, Pages 605-607 (1.333 - IF2014)
[2]Mihalik Jr., M., Mihalik, M., Maťaš, S., Vavra, M., Magnetism in NdMnO3+? studied by the single crystal neutron diffraction, Acta Physica Polonica A Volume 126, Issue 1, July 2014, Pages 284-285 (0.53 - IF2014)
[3]Antoňák, M., Mihalik, M., Zentková, M., Mihalik Jr., M., Vavra, M., Lazúrová, J., Fitta, M., Balanda, M., Magnetic properties of La0.85Ag0.15MnO3 nano-powders under pressure, Acta Physica Polonica A Volume 126, Issue 1, July 2014, Pages 296-297 (0.53 - IF2014)
[4]Vavra, M., Mihalik, M., Mihalik, M., Zentková, M., Lazurová, J., Matik, M., Briančin, J., Arnold, Z., Maryško, M., Magnetostructural correlations of nano-sized manganites prepared by different ways, Acta Physica Polonica A Volume 126, Issue 1, July 2014, Pages 304-305 (0.53 - IF2014)
[5]Mihalik, M., Zentková, M., Briančin, J., Fitta, M., Mihalik Jr., M., Lazúrová, J., Vavra, M., Magnetic properties of La0.8K0.2MnO3 nanoparticles, Acta Physica Polonica A Volume 126, Issue 1, July 2014, Pages 312-313 (0.53 - IF2014)
[6]Zentková, M., Lazúrová, J., Kováč, J., Mihalik, M., Mihalik Jr., M., Briančin, J., Fitta, M., Kusigerski, V., Magnetic properties of NdFe0.9Mn0.1O3, Acta Physica Polonica A Volume 126, Issue 1, July 2014, Pages 306-307 (0.53 - IF2014)
[7]Antonak, M., Mihalik, M., Mihalik, M., Zentkova, M., Gritzner, G., Magnetocaloric effect of La0.85Ag0.15MnO3 under pressure, IEEE Transactions on Magnetics, Volume 50, Issue 11, 1 November 2014, Article number 6800071(1.213 - IF2014)
21.) Funkčná a štruktúrna integrita proteínov v dvojvrstvových micelách – aplikácia na mitochondriálne a amyloidogénne proteíny (Functionality and Structural Integrity of Proteins in Bicelles – Implications for Mitochondrial and Amyloidogenic Proteins)
|Zodpovedný riešiteľ: |Andrey Musatov |
|Trvanie projektu: |1.1.2014 / 31.12.2016 |
|Evidenčné číslo projektu: |2/0062/14 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |VEGA: 1754 € |
Dosiahnuté výsledky:
ADCA. Vedecké práce v zahraničných karentovaných časopisoch impaktovaných:
MUSATOV, Andrey - ROBINSON, Neal C. Bound cardiolipin is essential for cytochrome c oxidase proton translocation. In Biochimie, 2014, vol. 105C, p. 159-164. (3.123 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 0300-9084.
SEDLÁK, Erik - VARHAČ, Rastislav - MUSATOV, Andrey - ROBINSON, Neal C. The Kinetic Stability of Cytochrome c Oxidase: Effect of Bound Phospholipid and Dimerization. In Biophysical Journal, 2014, vol. 107, no. 12, p. 2941-2949. (3.832 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 0006-3495.
AFG. Abstrakty príspevkov zo zahraničných konferencií:
Musatov, A., Varhac, R., Robinson, N. C. Sedlak, E. “Structural Basis for Cytochrome c Oxidase Kinetic Stability – Differential Scanning Calorimetry Study” 18th International Biophysics Congress, Brisbane, Australia 3.-7. August 2014 (Abstract # 551).
Prednášky a vývesky na domácich vedeckých podujatiach:
Musatov, A. “Contribution of Oxidatively Modified Cardiolipin to Mitochondrial Oxidative Stress” VI. Slovenské biofyzikálne sympózium, Martin 11. - 13. marca 2014 (In: Book of Abstracts pp. 58-59).
Varhač, R., Musatov, A., Robinson, N. C., Sedlák, E. “Factors Affecting Kinetic Stability of Cytochrome c Oxidase” VI. Slovak Biophysical Symposium, Martin, March 2014 (In: Book of Abstracts, pp. 78-79).
22.) Vlastnosti jadrovej matérie vytvorenej v interakciách s jadrovými terčíkmi pri vysokých energiách (Properties of nuclear matter created in interactions with nuclear targets at high energies)
|Zodpovedný riešiteľ: |Ján Nemčík |
|Trvanie projektu: |1.1.2014 / 31.12.2017 |
|Evidenčné číslo projektu: |vega 2/0020/14 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |UEF SAV Kosice: 1827 € |
Dosiahnuté výsledky:
Croninov efekt, čo je jadrové zosilnenie produkcie hadrónov pri vysokých hodnotách pT v pA zrážkach, bol úspešne predpovedaný do prvých meraní na RHIC a LHC. Ohraničenia spôsobené zachovaním energie vedú k veľkolepým efektom. Deficit energie sa stáva dôležitým pre hadrónovú produkciu v pA interakciách pri veľkých xL a/alebo xT smerom ku kinematickej hranici xL,T = 1. To vedie k potlačeniu, ktoré bolo naozaj pozorované pre hadróny produkované pri dopredných rapiditách a veľkých hodnotách pT. Intenzívna disipácia energie prostredníctvom radiácie gluónov vysoko-virtuálnym partónom vytvoreným s veľkou hodnotou pT spôsobuje, že je nemožné, aby tento proces trval dlhú dobu. Farebná neutralizácia a vytvorenie bezfarebného dipólu musí prebehnúť rýchlo. Ak sa tak stane vo vnútri horúcej matérie vytvorenej v AA zrážkach, oslabenie dipólov skôr než indukované energetické straty sa stáva dominantným mechanizmom pre potlačenie hadrónov s veľkými hodnotami pT.
[1] J. Nemchik, R. Pasechnik, I.K. Potashnikova,
"A heuristic description of high-pT hadron production in heavy ion collisions"
preprint of LUND University LU-TP-14-27; e-Print: arXiv:1407.2781 [hep-ph]
Submitted to Eur. Phys. J. C.
[2] B.Z. Kopeliovich, J. Nemchik, I.K. Potashnikova and I. Schmidt,
"Quenching of high-pT hadrons: a non-energy-loss scenario"
Published in EPJ Web Conf. 71 (2014) 00070
DOI: 10.1051/epjconf/20147100070
[3] B.Z. Kopeliovich, J. Nemchik, I.K. Potashnikova and I. Schmidt,
"Energy conservation in high-pT nuclear reactions"
Published in Int.J.Mod.Phys. E23 (2014) 4, 1430006
DOI: 10.1142/S0218301314300069
[4] M. Krelina, J. Nemchik,
"Cronin effect at different energies: from RHIC to LHC",
Published in EPJ Web Conf. 66 (2014) 04016
DOI: 10.1051/epjconf/20146604016
[5] J. Cepila, J. Nemchik,
"Direct photons at large pT: from RHIC to LHC",
Published in EPJ Web Conf. 66 (2014) 04006
DOI: 10.1051/epjconf/20146604006
23.) Vplyv teploty, magnetického poľa, vysokých tlakov a rozmeru na základný stav zlúčenín s neobvyklým chovaním (The influence of temperature, magnetic fields, high pressure and dimension on the ground state of compounds)
|Zodpovedný riešiteľ: |Marián Reiffers |
|Trvanie projektu: |1.1.2012 / 31.12.2015 |
|Evidenčné číslo projektu: |VEGA 2/0070/12 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
24.) Andrejev-Majorana excitácie v supratekutom 3He-B (Andreev-Majorana excitations in superfluid 3He-B)
|Zodpovedný riešiteľ: |Peter Skyba |
|Trvanie projektu: |1.1.2012 / 31.12.2014 |
|Evidenčné číslo projektu: |2/0128/12 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |3 - Fínsko: 1, Veľká Británia: 2 |
| | |
Dosiahnuté výsledky:
Študovali sme vlastnosti mechanických piezo-rezonátorov v silných magnetických poliach do 8Tesla a pri veľmi nízkych teplotách. Ukázali sme, že prítomné magnetické pole stáča smer polarizačného prúdu, čo sa prejavuje zvýšením elektrického odporu tohto rezonátora. Najdôležitejším výsledkom je skutočnosť, že s magnetickým poľom sa nemení hodnota konštanty zväzujúcej meraný polarizačný prúd s rýchlosťou oscilácií ramien piezo-rezonátora. Tento poznatok má zásadný význam aj z pohľadu aplikácie týchto rezonátorov v STM technikách. Výsledky boli prezentované na konferenciách LT 27 a ULT V Buenos Aires resp. Bariloche, Argentína a sú publikované v časopise Journal of Physics Conference Series 568 (2014) 032006 (tiež viď. arxiv:1407.4584v), ako aj na 18. Konferncii českých a slovenských fyzikov v Olomouci formou prednášky.
M. Človečko, M. Kupka, P. Skyba, F. Vavrek: Vacuum properties of high quality tuning fork in high magnetic field up to 8 Tesla and mK temperatures. Journal of Physics Conference Series 568 (2014) 032006 (tiež viď. arxiv:1407.4584v).
25.) Vývoj a implementácia postupov pre rekonštrukciu a analýzu dát z protón-protónových zrážok na urýchľovači LHC (Development and implementation of procedures for reconstruction and analysis of data from proton-proton interactions on LHC accelerator)
|Zodpovedný riešiteľ: |Pavol Stríženec |
|Trvanie projektu: |1.1.2012 / 31.12.2015 |
|Evidenčné číslo projektu: |VEGA 2/0097/12 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |1 - Slovensko: 1 |
|Čerpané financie: |VEGA: 6813 € |
Dosiahnuté výsledky:
V tomto roku pokračovalo prerušenie zberu dát na urýchľovači LHC, preto naša hlavná náplň metodickej časti projektu boli úpravy a zlepšovanie kalibračného a rekonštrukčného softwaru, za ktorý je spoluzodpovedná naša skupina, aby vyhovoval požiadavkám zvýšenej energie a svietivosti po opetovnom spustení LHC.
Úspešne sme rozšírili GRID farmu na ústave a spoľahlivo spočítali veľa simulácií pre kolaboráciu ATLAS.
Výsledky práce sú týmto zahrnuté v mnohých publikáciách, ktoré kolaborácia ATLAS publikovala minulý rok, vo väčšine publikácií v karentovaných časopisoch (viď zoznam publikácií vo výročnej správe ÚEF SAV ADCA1-ADCA82), ako aj v mnohých preprintoch a interných nótach kolaborácie ATLAS, ktorých zoznam pre jeho dĺžku neuvádzame.
26.) Aplikácia magnetických kvapalín v elektrotechnike (Application of magnetic fluids in electrical engineering)
|Zodpovedný riešiteľ: |Milan Timko |
|Trvanie projektu: |1.1.2012 / 31.12.2015 |
|Evidenčné číslo projektu: |2/0043/12 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |VEGA: 4252 € |
Dosiahnuté výsledky:
Bolo študovaný efekt agregácie magnetických nanočastíc v magnetických kvapalinách v externom elektrickom poli. Predmetom štúdia bola vzorka magnetickej kvapaliny na báze transformátorového oleja Mogul. Predpokladaná tvorba agragátov častíc bola netradične skúmaná dielektrickou spektroskopiou tenkých vrstiev vzorky. Vďaka variácii vzájomnej vzdialenosti elektród meracieho kondenzátora v rozsahu 1.6 – 75 ?m a súčasne konštantnom elektrickom polí, boli pozorované zmeny polohy nízkofrekvenčného relaxačného maxima, ktoré súvisí s polarizáciou iónových skupín na rozhraní častica-olej. Podobný efekt bol vyvolaný aj priloženým DC bias elektrickým poľom s rôznymi intenzitami. Keďže relaxačný čas pozorovaného procesu výrazne závisí od rozmeru magnetickej častice (agregátu), nárast relaxačného času s rastúcim DC elektrickým poľom, či zväčšujúcou sa vzdialenosťou medzi elektródami kondenzátora bol pripísaný tvorbe agregátov magnetických častíc vyvolanej externým elektrickým poľom. Na základe analýzy týchto výsledkov sme teda poukázali na doposiaľ zanedbávaný vplyv elektrického poľa na tvorbu agregátov magnetických častíc, ktorá by mala byť braná do úvaha najmä pri štúdiu dielektrických vlastností magnetických kvapalín pre potenciálne aplikácie v elektroenergetike. Navyše, zdôraznili sme využitie dielektrickej spektroskopie ako doplnkovej metódy detekcie a štúdia tvorby agregátov koloidných častíc.
Výsledky publikované:
1.Dielectric-spectroscopy approach to ferrofluid nanoparticle clustering induced by an external electric field By:Rajnak, M; Kurimsky, J; Dolnik, B; Kopcansky, P; Tomasovicova, N; Taculescu-Moaca, EA; Timko, M, PHYSICAL REVIEW E Volume: 90 Issue: 3 Article Number: 032310 Published: SEP 26 2014
2.Hall Effect in ZnO Extrinsic Structure By:Dolnik, B ; Kurimsky, J; Marton, K; Kolcun, M; Tomco, L; Briancin, J; Fabian, M; Halama, M; Vojtko, M; Rajnak, M, ACTA PHYSICA POLONICA A Volume: 126 Issue: 1 Pages: 76-77 Published: JUL 2014
3. Characterization of Magnetosomes After Exposure to the Effect of the Sonication and Ultracentrifugation By:Molcan, M; Hashim, A; Kovac, J; Rajnak, M; Kopcansky, P; Makowski, M; Gojzewski, H; Molokac, M; Hvizdak, L; Timko, M, ACTA PHYSICA POLONICA A Volume: 126 Issue: 1 Pages: 198-199 Published: JUL 2014
4.The Investigation on the E-J Characteristics and the Role of Nanoparticle Concentration in Weakly Polar Magnetic Fluids, By:Kurimsky, J; Dolnik, B; Marton, K; Kolcun, M; Tomco, L; Rajnak, M; Timko, M; Kopcansky, P, ACTA PHYSICA POLONICA A Volume: 126 Issue: 1 Pages: 246-247 Published: JUL 2014
5.Influence of Magnetic Field on Dielectric Breakdown in Transformer Oil Based Ferrofluids
By:Rajnak, M; Kurimsky, J; Dolnik, B; Marton, K; Tomco, L; Molcan, M; Kopcansky, P; Timko, M, ACTA PHYSICA POLONICA A Volume: 126 Issue: 1 Pages: 248-249 Published: JUL 2014
6.Viscosity Dependence of a Magnetic Fluid Nanoparticles Concentration, By:Tothova, J; Kovac, J; Kopcansky, P; Rajnak, M; Paulovicova, K; Timko, M; Jozefczak, A, ACTA PHYSICA POLONICA A Volume: 126 Issue: 1 Pages: 278-279 Published: JUL 2014
7. Acoustic wave in a suspension of magnetic nanoparticle with sodium oleate coating, By: Jozefczak, A.; Hornowski, T.; Zavisova, V.; et al., JOURNAL OF NANOPARTICLE RESEARCH Volume: 16 Issue: 3 Article Number: 2271 Published: FEB 5 2014
Programy: APVV
27.) Masívne supravodiče (Bulk Superconductors)
|Zodpovedný riešiteľ: |Pavel Diko |
|Trvanie projektu: |1.10.2013 / 30.9.2017 |
|Evidenčné číslo projektu: |APVV-0330-12 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Metódou rastu z podchladenej taveniny boli pripravené monokryštalické vzorky masívnych YBaCuO , supravodičov s prídavkom Sm, Gd resp Yb, SmBaCuO a GdBaCuO masívnych supravodičov, analyzovaná ich mikroštruktúra a magnetizačnými meraniami charakterizované supravodivé vlastnosti. Boli testované parametre prípravy YBaCuO masívnych monokryštalických supravodičov infiltračnou metódou. Pripravili sme monokryštály supravodičov dichalkogenidov metódou chemického transportu, charakterizovali ich štruktúru a prechod do supravodivého stavu.
1. VOLOCHOVÁ, Daniela - JUREK, Karel - RADUŠOVSKÁ, Monika - PIOVARČI, Samuel - ANTAL, Vitaliy - KOVÁČ, Jozef - JIRSA, Miloš - DIKO, Pavel. Contamination of YBCO Bulk Superconductors by Samarium and Ytterbium. In Physica C. Superconductivity and its applicacions, 2014, vol. 496, p. 14-17. (1.110 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 0921-4534. Typ: ADC
2. JIRSA, Miloš - RAMEŠ, Michal - VOLOCHOVÁ, Daniela - RADUŠOVSKÁ, Monika - DIKO, Pavel. Electromagnetic Properties of Melt-Grown YBaCuO Superconductors Doped by Gd and Sm. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 326-327. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 0587-4246. Typ: ADC
3. ZMORAYOVÁ, Katarína - ANTAL, Vitaliy - RADUŠOVSKÁ, Monika - PIOVARČI, Samuel - VOLOCHOVÁ, Daniela - DIKO, Pavel. Microstructure and Properties of Y-123/Y-211 Bulk Superconductors with BaCeO3 and BaO2 Addition. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 366-367. (0.604 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 0587-4246. Typ: ADC
4.M. Šefčiková, S. Piovarči, M´. Radušovská, V. Antal, V. Kavečanský, - P. Diko The Influence of Y211 Milling Conditions on the Microstructure of Y123/Y211 Bulk Superconductors. In Materials Science Forum, 2014, vol. 782, p. 545-548. (2014 - WOS). ISSN 0255-5476.
28.) Kolektívne javy vo viazaných elektrónových a spinových systémoch (Collective phenomena in coupled electron and spin systems)
|Zodpovedný riešiteľ: |Pavol Farkašovský |
|Trvanie projektu: |1.10.2013 / 31.12.2015 |
|Evidenčné číslo projektu: |APVV-0097-12 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
29.) Nekonvenčné kvantové stavy v nanoskopických magnetických systémoch. (Novel quantum states in nanoscopic magnetic systems.)
|Zodpovedný riešiteľ: |Slavomír Gabáni |
|Trvanie projektu: |1.7.2012 / 31.12.2015 |
|Evidenčné číslo projektu: |APVV-0132-11 |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: |Univerzita Pavla Jozefa Šafárika v Košiciach |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |ÚEF SAV: 12342 € |
Dosiahnuté výsledky:
V roku 2014 bolo pripravených a publikovaných 10 karentovaných článkov, ktoré súvisia s experimentálnym štúdiom boridov vzácnych zemín v extrémnych podmienkach [1-8] a skúmaním QHE na tenkých vrstvách na báze Ge [9, 10]. Počas roka 2014 bola podrobne zmeraná tepelná kapacita tuhých roztokov Ho1-xLuxB12 (x=0.5, 0.8, 0.9, 0.99), Tm1-xYbxB12 (x=0.096, 0.14, 0.18) resp. Ce1-xLaxB6 (x=0.9, 0.97, 0.99) bohatých na bór pod 2 K až do 70 mK a pri rôznych magnetických poliach do 9 T. Počas mesačného pobytu v GPI Moscow sa skúmal Hallov jav a uhlová závislosť magnetorezistivity tuhých roztokov Ho1-xLuxB12 v intervale teplôt 2-300 K a v magnetických poliach do 8 T [11]. Bola zavedená metóda merania magnetizácie a ac-susceptibility pri vysokých tlakoch v piestikovej aj diamantových komôrkach a následne úspešne otestovaná na supravodivom materiály YB6. Počas mesačného pobytu v Japonsku sa skúmal vplyv vysokého tlaku (do 10 GPa) na zmiešanú valenčnosť a energetickú medzeru v čistom SmB6 metódou NMR (Univerzita Hyogo) a RTG (Spring8 synchrotrón). V súvislosti so zlúčeninou SmB6 ako kandidátom na topologický izolátor sa študovali transportné, magnetické a ARPES merania až do teplôt 40 mK [12]. Niektoré z výsledkov boli prezentované na konferenciách SCES´14 (7.-11.7.2014, Grenoble), ATOMS´14 (30.7.-4.8.2014, Bariloche), LT´27 (6.-13.2014, Buenos Aires) a ISBB´14 (31.8.-5.9.2014, Hawaii).
[1] Gabáni S., Takáčová I., Pristáš G., Gažo E., Flachbart K., Mori T., Braithwaite D., Míšek M., Kamenev K.V., Hanfland M., Samuely P.: High-pressure effect on the superconductivity of YB6, Physical Review B 90 (2014) 045136
[2] Sluchanko N.E., Azarevich A.N., Anisimov M.A., Bogach A.V., Voronov V.V., Gavrilkin S.Yu., Glushkov V.V., Demishev S.V., Kuznecov A.V., Micen K.V., Filippov V.B., Shitsevalova N.Yu., Gabáni S., Flachbart K.: Features of the formation of magnetic moments of Tm3+ and Yb3+ rare-earts ions in LuB12 cage glass, Journal of Experimental and Theoretical Physics Letters 100 (2014) 470-476
[3] Pristáš G., Gabáni S., Flachbart K., Filipov V., Shitsevalova N.: Investigation of the energy gap in Sm1-xB6 and Sm1-xLaxB6 Kondo Insulators, Journal of the Physical Society of Japan Conference Proceedings 3 (2014) 012021-1-6
[4] Gabáni S., Flachbart K., Bednarčík J., Welter E., Filipov V., Shitsevalova N.: Investigation of mixed valence state of Sm1-xB6 and Sm1-xLaxB6 by XANES, Acta Physica Polonica A 126 (2014) 338-339
[5] Gabáni S., Pristáš G., Takáčová I., Flachbart K., Filipov V., Shitsevalova N., Siemensmeyer K.: Magnetic phase diagram of TmB4 under high pressure, Acta Physica Polonica A 126 (2014) 356-357
[6] Sluchanko N.E., Azarevich A.N., Bogach A.V., Glushkov V.V., Demishev S.V., Gavrilkin S.Yu., Gabáni S., Flachbart K., Shitsevalova N.Yu., Filipov V.B., Vanacken J., Moshchalkov V.V., Stankiewicz J.: Magnetoresistance anisotropy and magnetic H-T phase diagram of Tm0,996Yb0,004B12, Acta Physica Polonica A 126 (2014) 332-333
[7] Anisimov M., Bogach A., Glushkov V., Demishev S., Samarin N., Gavrilkin S., Mitsen K., Shitsevalova N., Levchenko A., Filippov V., Gabáni S., Flachbart K., Sluchanko N.: Defect mode in LaB6, Acta Physica Polonica A 126 (2014) 350-351
[8] Anisimov M., Bogach A., Glushkov V., Demishev S., Samarin N., Shitsevalova N., Levchenko A., Filippov V., Kuznetsov A., Flachbart K., Sluchanko N.: Hall effect in GdB6, Acta Physica Polonica A 126 (2014) 348-349
[9] Mironov O.A., Hassan A.H.A., Moris R.J.H., Dobbie A., Uhlarz M., Chrastina D., Hague J.P., Kiatgamolchai S., Beanland R., Gabáni S., Berkutov I.B., Helm M., Drachenko O., Myronov M., Leadley D.R.: Ultra high hole mobilities in a pure strained Ge quantum well, Thin Solid Films 557 (2014) 329-333
[10] Mironov O.A., Hassan A.H.A., Uhlarz M., Kiatgamolchai S., Dobbie A., Morris R.J.H., Halpin J.E., Rhead S.D., Allred P., Myronov M., Gabani S., Berkutov I.B., Leadley D.R.: New RP-CVD grown ultra-high performance selectively B-doped pure-Ge 20 nm QWs on (100)Si as basis material for post-Si CMOS technology, Physica Status Solidi C 11 (2014) 61-64
[11] Sluchanko N.E., Khoroshilov A.L., Anisimov M.A., Azarevich A.N., Bogach A.V., Glushkov V.V., Demishev S.V., Krasnorussky V.N., Voronova N.Yu., Shitsevalova N.Yu., Filippov V.B., Levchenko A.V., Pristas G., Gabani S., Flachbart K.: Charge transport in HoxLu1-xB12: Separating positive and negative magnetoresistance in metals with magnetic ions, arXiv.1412.0497
[12] Gabáni S., Pristáš G., Takáčová I., Sluchanko N., Siemensmeyer K., Shitsevalova N., Filipov V., Flachbart K.: Surface and bulk components of electrical conductivity in (presumably special topological) Kondo insulator SmB6 at lowest temperatures, arXiv.1407.5771
30.) Štrukturalizačné javy v systémoch s nanočasticami (Structuralization phenomena in systems with nanoparticles)
|Zodpovedný riešiteľ: |Peter Kopčanský |
|Trvanie projektu: |1.5.2011 / 31.10.2014 |
|Evidenčné číslo projektu: |APVV-0171-10 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
V rámci riešenia projektu boli pripravené rôzne typy nanočastíc (sférické, tyčinkovité, retiazkovité, magnetoferitín, funkcionalizované uhlíkové nanorúrky), ktoré boli použité pri vytvárani rôznych kompozitných systémov: kvapalné kryštály dopované nanočasticami, amyloidné štruktúry s nanočasticami a 3D štruktúry. K hlavným výsledkom projektu patrí pozorovanie magnetickým poľom indukovaného fázového prechodu v kvapalných kryštáloch dopovaných magnetickými nanočasticami, čím sa znížila o 1 rád teoretický predpovedaná hodnota magnetického poľa (zo 100T na 10T) pre takýto efekt a tým sa zvýšila citlivosť kvapalných kryštálov na magnetické pole. Toto umožnilo pripraviť systémy s lineárnou odozvou v oblasti nízkych magnetických polí, čo može viesť k aplikácii týchto materiálov ako senzorov magnetického poľa. Štúdium vplyvu dopovania kvapalných kryštálov na fázové prechody ukázalo výrazny vplyv tvarovej anizotrópie magnetických nanočastíc na tieto prechody a potvrdilo teóretickú predpoveď tohto javu. Štúdium interakcii niektorých magnetických nanočastíc s amyloidnými štruktúrami viedli k poznatku, že tieto nanočastice redukujú amyloidne štruktúry až o 90%, čo môže byť významným terapeutickým základom na liečenie neurovegetatívnych ochorení. Tieto výsledky boli podporené aj teoretickým modelovaním. Boli skonštruované zariadenia s využitím kontinuálneho laseru, ktoré umožňujú vytváranie takýchto 3D štruktúr. Vypracovaná softwarová podpora umožňuje dopredu navrhnúť žiadaný geometrický tvar od jednoduchých sietí až po štruktúry trojitých periodických minimálnych povrchov s rozdielnymi veľkosťami otvorov a tvarov plôch.
Za celé obdobie riešenia projektu bolo publikovaných 49 CC prác a udelené 2 patenty v zahraničí
31.) Vysokopevné elektrotechnické kompozitné ocele (High strength electrotechnical composite steels)
|Zodpovedný riešiteľ: |František Kováč |
|Zodpovedný riešiteľ v organizácii SAV: |Ivan Škorvánek |
|Trvanie projektu: |1.7.2012 / 31.12.2015 |
|Evidenčné číslo projektu: |0147-11 |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: | |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Pokračovalo sa vo vyšetrovaní štruktúrnych a magnetických vlastností vybraných vzoriek FeSi ocelí so zlepšenou kombináciu pevnostných a elektromagnetických vlastností. Vzorky pre magnetické merania boli dodané v definovanom stave po ich valcovaní a tepelnom spracovaní na pracovisku hlavného riešiteľa projektu ÚMV SAV. Naša pozornosť bola venovaná najmä meraniam ac – hysteréznych slučiek a wattových strát pre vybrané vzorky FeSi ocelí pri frekvencii 50 Hz na uzavretých vzorkách v tvare toroidov. Časť našich výskumných aktivít bola tiež orientovaná na štúdium povrchovej doménovej štruktúry pomocou magnetooptického Kerrovho mikroskopu. Doménová štruktúra na vybraných vzorkách bola lokálne modifikovaná použitím laserového lúča.
1.PETRYSHYNETS, Ivan - KOVÁČ, František - SOPKO, Martin - MARCIN, Jozef - PETROV, Branislav. Study of Microstructure and Texture Evolution in Grain-Oriented Steels Via Coercivity Measurements. In IEEE Transactions on Magnetics, 2014, vol. 50, no. 4, art. no. 2002004.
2.PETRYSHYNETS, Ivan - KOVÁČ, František - MARCIN, Jozef - ŠKORVÁNEK, Ivan. Improved Processing Technique for Preparation of Non-Oriented Electrical Steels with Low Coercivity. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 182-183.
3.ŠKORVÁNEK, Ivan - MARCIN, Jozef - KOVÁČ, J. - ŠVEC, Peter - LUPU, N. - CHIRIAC, H. Tuning of soft magnetic properties in FeCo- and FeNi- based amorphous and nanocrystalline alloys by thermal processing in external magnetic field. In Advanced Materials Research, 2014, vol. 783-786, p. 1937-1942.
32.) Vývoj a kalibrácia kozmických instrumentov pre nové kozmické misie SPETR-R a RESONANCE - analýza prvých dát (Development & calibration of space instruments for the new space mission SPEKTR-R and RESONANCE - first data analysis)
|Zodpovedný riešiteľ: |Karel Kudela |
|Trvanie projektu: |1.1.2013 / 31.1.2015 |
|Evidenčné číslo projektu: |SK-GR-0023-11 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: | |
Dosiahnuté výsledky:
Spoločná publikácia [1], zaslané do tlače [2]:
1. Zelenyi, L.M.,...,J. Baláž, K. Kudela, I. Strhárský, M. Slivka,...,E. Sarris, T. Sarris, ..., "PLASMA-F" experiment: 3 years of operation on orbit, in Vestnik NPO im. S. A. Lavochkina, No 3, 24, p.12 - 36, 2014, ISSN 2075,
2. A. A. Petrukovich, T. Inamori, J. Balaz, K. Kudela, I. Strharsky, M. Slivka, V. A. Gladyshev, E.T. Sarris, T.E. Sarris, Oscillations of energetic ions near the Earth's bow shock, submitted to J. Geophys. Res., december 2014.
33.) Kvantová elektrodynamika umelých nanoštruktúr (Quantum electrodynamics of artificial nanostructures)
|Zodpovedný riešiteľ: |Martin Kupka |
|Trvanie projektu: |1.5.2011 / 31.10.2014 |
|Evidenčné číslo projektu: |APVV-0515-10 |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: |Grajcar Miroslav, doc. RNDr., DrSc. |
|Počet spoluriešiteľských inštitúcií: |0 |
Dosiahnuté výsledky:
Študovali sme vlastnosti mechanických piezo-rezonátorov v silných magnetických poliach do 8Tesla a pri veľmi nízkych teplotách. Ukázali sme, že prítomné magnetické pole stáča smer polarizačného prúdu, čo sa prejavuje zvýšením elektrického odporu tohto rezonátora. Najdôležitejším výsledkom je skutočnosť, že s magnetickým poľom sa nemení hodnota konštanty zväzujúcej meraný polarizačný prúd s rýchlosťou oscilácií ramien piezo-rezonátora. Tento poznatok má zásadný význam aj z pohľadu aplikácie týchto rezonátorov v STM technikách. Výsledky boli prezentované na konferenciách LT 27 a ULT V Buenos Aires resp. Bariloche, Argentína a sú publikované v časopise Journal of Physics Conference Series 568 (2014) 032006 (tiež viď. arxiv:1407.4584v), ako aj na 18. Konferncii českých a slovenských fyzikov v Olomouci formou prednášky.
M. Človečko, M. Kupka, P. Skyba, F. Vavrek: Vacuum properties of high quality tuning fork in high magnetic field up to 8 Tesla and mK temperatures. Journal of Physics Conference Series 568 (2014) 032006 (tiež viď. arxiv:1407.4584v).
34.) Progresívne polymérne technológie v biomedicíne: Polymérne mikrokapsule pre imunitnú ochranu transplantovaných pankreatických ostrovčekov v liečbe cukrovky (Advanced polymer technologies in biomedicine: Polymer microcapsules for immunoprotection of transplanted pancreatic islets in diabetes treatment )
|Zodpovedný riešiteľ: |Igor Lacík |
|Zodpovedný riešiteľ v organizácii SAV: |Marián Sedlák |
|Trvanie projektu: |1.5.2011 / 31.10.2014 |
|Evidenčné číslo projektu: |048610 |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: | |
|Počet spoluriešiteľských inštitúcií: |0 |
Dosiahnuté výsledky:
Skúmali sme možnosti tvorby polymérnych nanočastíc z polymérnych reťazcov riadeným samousporiadaním. Podobne ako v predchádzajúcich štúdiách bol princíp založený na zastavení fázovej separácie na nanoúrovni a prevencii makrofázovej separácie. V tomto špeciálnom prípade bol prostriedkom na zastavenie makrofázovej separácie surfaktant pridaný k polyméru [1]. Konkrétne šlo o pH-responzívne polyméry na báze aminokyselín, menovite poly(N-methacryloyl-L-valine), poly(Nmethacryloyl-L-phenylalanine), a poly(N-methacryloyl glycyne-L-leucine) (P1, P2, P3) ktoré boli skúmané bez a za prítomnosti neiónového surfaktantu Brij98. Kombinácia statického, dynamického a elektroforetického rozptylu svetla, synchrotrónového SAXS, diferenciálnej skenovacej kalorimetrie, izotermickej titračnej kalorimetrie, FTIR spektroskopie a kvantovo chemických výpočtov bola použitá v tejto práci.
[1] A. Bogomolova, S. Keller, J. Klingler, M. Sedlak, D. Rak, A. Sturcova, M. Hruby, P. Stepanek, S.K. Filippov: Self-Assembly Thermodynamics of pH-Responsive Amino-Acid-Based Polymers with a Nonionic Surfactant. Langmuir 30, 11307-11318, 2014.
35.) Magnetoelektrický jav a spin-fonónová väzba v oxidoch prechodných kovov (Magneto-electric effect and spin-phonon coupling in transition metal oxides)
|Zodpovedný riešiteľ: |Marián Mihalik |
|Trvanie projektu: |1.1.2013 / 31.12.2014 |
|Evidenčné číslo projektu: |SK-PT-0026-12 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |1 - Portugalsko: 1 |
|Čerpané financie: |APVV: 2450 € |
Dosiahnuté výsledky:
Matus Mihalik, Marian Mihalik, Magdalena Fitta, Martin Vavra, Maria Zentkova, R.Vilarinho, D.A.Mota, J. Agostinho Moreira, A. Almeida: Magnetic, dielectric and dynamical properties of TbMn1-xFexO3 ceramics and single crystals, The International Conference on Strongly Correlated Electron Systems, July 7 - July 11, 2014, Grenoble, France, Book of abstracts, Mo-052,pp 418
Matus Mihalik, Marian Mihalik, Magdalena Fitta, Martin Vavra, Maria Zentkova, R.Vilarinho, D.A.Mota, J. Agostinho Moreira, A. Almeida: Magnetic, dielectric and dynamical properties of TbMn1-xFexO3 ceramics and single crystals, prijaté na publikovanie v časopise Journal of Physics: Conference Series.
36.) Silno interagujuca hmota v extremnych podmienkach (Strongly interacting matter under extreme conditions)
|Zodpovedný riešiteľ: |Štefan Olejník |
|Zodpovedný riešiteľ v organizácii SAV: |Ján Nemčík |
|Trvanie projektu: |1.7.2012 / 31.12.2015 |
|Evidenčné číslo projektu: |APVV-0050-11 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |UEF SAV Kosice: 3747 € |
Dosiahnuté výsledky:
Croninov efekt, čo je jadrové zosilnenie produkcie hadrónov pri vysokých hodnotách pT v pA zrážkach, bol úspešne predpovedaný do prvých meraní na RHIC a LHC. Ohraničenia spôsobené zachovaním energie vedú k veľkolepým efektom. Deficit energie sa stáva dôležitým pre hadrónovú produkciu v pA interakciách pri veľkých xL a/alebo xT smerom ku kinematickej hranici xL,T = 1. To vedie k potlačeniu, ktoré bolo naozaj pozorované pre hadróny produkované pri dopredných rapiditách a veľkých hodnotách pT. Intenzívna disipácia energie prostredníctvom radiácie gluónov vysoko-virtuálnym partónom vytvoreným s veľkou hodnotou pT spôsobuje, že je nemožné, aby tento proces trval dlhú dobu. Farebná neutralizácia a vytvorenie bezfarebného dipólu musí prebehnúť rýchlo. Ak sa tak stane vo vnútri horúcej matérie vytvorenej v AA zrážkach, oslabenie dipólov skôr než indukované energetické straty sa stáva dominantným mechanizmom pre potlačenie hadrónov s veľkými hodnotami pT.
[1] J. Nemchik, R. Pasechnik, I.K. Potashnikova,
"A heuristic description of high-pT hadron production in heavy ion collisions"
preprint of LUND University LU-TP-14-27; e-Print: arXiv:1407.2781 [hep-ph]
Submitted to Eur. Phys. J. C.
[2] B.Z. Kopeliovich, J. Nemchik, I.K. Potashnikova and I. Schmidt,
"Quenching of high-pT hadrons: a non-energy-loss scenario"
Published in EPJ Web Conf. 71 (2014) 00070
DOI: 10.1051/epjconf/20147100070
[3] B.Z. Kopeliovich, J. Nemchik, I.K. Potashnikova and I. Schmidt,
"Energy conservation in high-pT nuclear reactions"
Published in Int.J.Mod.Phys. E23 (2014) 4, 1430006
DOI: 10.1142/S0218301314300069
[4] M. Krelina, J. Nemchik,
"Cronin effect at different energies: from RHIC to LHC",
Published in EPJ Web Conf. 66 (2014) 04016
DOI: 10.1051/epjconf/20146604016
[5] J. Cepila, J. Nemchik,
"Direct photons at large pT: from RHIC to LHC",
Published in EPJ Web Conf. 66 (2014) 04006
DOI: 10.1051/epjconf/20146604006
37.) Účinok aliskirénu viazaného na nanočastice pri experimentálnej hypertenzii (The effect of aliskiren loaded nanoparticles in experimental hypertension)
|Zodpovedný riešiteľ: |Oľga Pecháňová |
|Zodpovedný riešiteľ v organizácii SAV: |Martina Koneracká |
|Trvanie projektu: |1.5.2011 / 31.10.2014 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: | |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |UEF SAV: 1936 € |
Dosiahnuté výsledky:
Na overenie účinnosti antihypertenzíva aliskirénu v polymérnej matrici boli prevedené experimenty na spontánne hypertenzívnych 12-týždňových samčekoch laboratórnych potkanov. Tieto boli rozdelené na kontrolnú skupinu, ktorej nebolo podávané liečivo (SHP=spontánne hypertezívne potkany), na skupinu, ktorej bolo podávané liečivo v klasickej forme (SHP + ALIS), a na skupinu, ktorej bolo podávané liečivo vo forme polymérnych nanosfér v dávke 25 mg/kg/deň počas 3 týždňov žalúdkovou sondou (SHP+ALIS/PLANPs). Tlak krvi bol meraný v chvostovej tepne
pletyzmografickou metódou. Zistilo sa, že systolický krvný tlak v skupine s neuzatvoreným aliskirénom sa oproti kontrolnej skupine (203,4±4,0 mmHg) výrazne znížil (178,7±1,8 mmHg). Avšak v skupine, ktorej bol podávaný aliskirén uzatvorený do polymérnych nanosfér, bolo dosiahnuté ďalšie zníženie hodnôt krvného tlaku až na úroveň 160,0±5,0 mmHg.
38.) Progresívne materiály s konkurenčnými parametrami usporiadania (Progressive materials with competing order parameters.)
|Zodpovedný riešiteľ: |Peter Samuely |
|Trvanie projektu: |1.7.2012 / 30.6.2015 |
|Evidenčné číslo projektu: |APVV-0036-11 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Projekt pokračoval podľa harmonogramu. Výsledky boli prezentované formou konferenčných príspevkov, vrátane dvoch pozvaných prednášok (P. Samuely, MoC ultrathin superconducting films on verge to the insulating state, konferencia SHYNED (Physics and Applications of Superconducting Hybride Nanoengineered Devices), NanoSC COST, Castellabbate, Taliansko a P. Szabó, STM studies of MoC close to superconductor-insulator transition, konferencia Nanoscale superconductivity, 4.5. – 7.5.2014, Madrid). V r. 2014 boli publikované nasledovné karentové práce:
S. Gabáni, I. Takáčová, G. Pristaš, E. Gažo, K. Flachbart, T. Mori, D. Braithwaite, M. Misek, K.V. Kamenev, M. Hanfland, and P. Samuely: High-pressure effect on the superconductivity of YB6,
Phys. Rev. B 90, 045136 (2014).
G. Pristaš, S. Gabáni, E. Gažo, V. Komanický, M. Orendáč, H. You: Influence of hydrostatic pressure on superconducting properties of niobium thin film,
Thin Solid Films 556, 470 (2014).
M. Šindler, R. Tesař, J. Koláček, P. Szabó, P. Samuely, V. Hašková, C. Kadlec, F. Kadlec, P. Kuzel:
Far-infrared electrodynamics of thin superconducting NbN film in magnetic fields,
Supercond. Sci. Technol. 27 055009 (2014).
S. Gabáni, G. Pristáš, I. Takáčová, K. Flachbart, E. Gažo, T. Mori, D. Braithwaite, P. Samuely,
Influence of Pressure on Superconductivity in YB6
Acta Physica Polonica 126, 340 (2014).
G. Pristáš, S. Gabáni, M. Orendáč, V. Komanický, E. Gažo:Study of Niobium Thin Films under Pressure
Acta Physica Polonica 126, 346 (2014).
P. Szabó, P. Neilinger, M. Trgala, M. Grajcar, P. Samuely: Superconductivity Near Transition to Insulating State in MoC Ultrathin Films Studied by Subkelvin STM,
Acta Physica Polonica 126, 368 (2014).
Z. Pribulová, Z. Medvecká, J. Kačmarčík, V. Komanický, T. Klein, P. Husaníková, V. Cambel, J. Šoltýs, G. Karapetrov, P. Samuely: Local Magnetometry of Cu0.064TiSe2,
Acta Physica Polonica 126, 370 (2014).
39.) Spontánne a vyvolané cielené samousporiadanie polymérnych a nepolymérnych materiálov v kvapalnom stave (Spontaneously occurring and induced target-oriented self-assembly of polymeric and nonpolymeric materials in liquid state)
|Zodpovedný riešiteľ: |Marián Sedlák |
|Trvanie projektu: |1.1.2014 / 31.12.2016 |
|Evidenčné číslo projektu: |2/0182/14 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: | |
Dosiahnuté výsledky:
Zistili sme, že v prípade ternárnych systémov, teda trojzložkových systémov voda/látka1/látka2, kde látka1 je vodorozpustná resp. vodou miešateľná látka a látka 2 je hydrofóbna látka s minimálnou rozpustnosťou vo vode prítomná v nízkych koncentráciách, dochádza k situácii, že látka2 nie je ani molekulárne rozpustená v zmesi, ani sa neseparuje makrofázovo, ale dochádza k tzv. mezoškálovej separácii na nanoúrovni – separuje sa vo forme stabilných nanoštruktúr (nanokvapiek, nanočastíc). Tento mechanizmus platí aj v prípade keď sa v systéme nachádza viac minoritných komponentov, t.j. viac typov hydrofóbnych látok v malých koncentráciách, čo je bežná situácia vo vedeckej praxi aj reálnom živote. Poznanie týchto javov a mechanizmov nanosegregácie „z prvej ruky“ nám umožnilo (ešte pred samotným publikovaním) podať patentovú prihlášku vynálezu týkajúcu sa spôsobu merania obsahu alkánov v alkoholoch metódou nanosegregácie vo vodných roztokoch. Po podaní slovenskej prihlášky bola následne podaná medzinárodná PCT patentová prihláška.
M. Sedlák, D. Rak: Spôsob merania obsahu alkánov v alkoholoch metódou nanosegregácie vo vodných roztokoch, Úrad Priemyselného Vlastníctva SR, číslo prihlášky: PP50002-2014.
M. Sedlák, D. Rak: On the Origin of Mesoscale Structures in Aqueous Solutions of Tertiary Butyl Alcohol: The Mystery Resolved. J. Phys. Chem. B 118 (10), pp 2726–2737, 2014.
40.) Senzory na báze magnetických mikrodrôtov (Sensors based on magnetic microwires)
|Zodpovedný riešiteľ: |Ivan Škorvánek |
|Trvanie projektu: |1.5.2011 / 30.12.2014 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: | |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Aktivity projektu boli orientované na zlepšenie magnetických vlastností amorfných a nanokryštalických materiálov v tvare rýchlochladených jednovrstvových a dvojvrstvových pásiek pomocou ich termomagnetického spracovania v externom magnetickom poli. Výsledky našich meraní ukázali, že k výraznému zlepšeniu magneticky mäkkého správania, charakterizovaného rekordne nízkymi hodnotami koercitívneho poľa (Hc=0,7 A/m), došlo po žíhaní amorfnej (Fe0.67Ni0.33)81Nb7B12 zliatiny pri teplote 673 K v pozdĺžnom magnetickom poli. Po tepelnom spracovaní v priečnom magnetickom poli boli získané hysterézne slučky s vyššou hodnotou koercitívnej sily, ktoré však vykazovali výbornú linearitu do vysokých polí. Metodiku tepelného spracovania materiálov vo vonkajšom magnetickom poli sme s úspechom využili i v prípade amorfných mikrodrôtov bez skleneného obalu, kde sme pozorovali výrazné zlepšenie magnetoimpedančných charakteristík najmä po ich vyžíhaní v priečnom magnetickom poli.To je z aplikačného hľadiska veľmi dôležité pre konštrukciu magnetometrov – napr. systémov HFT vyrábaných firmou EDIS, ktorá je partnerom v tomto projekte.
1.KLEIN, Peter - VARGA, Rastislav - ŠKORVÁNEK, Ivan - EL KAMMOUNI, Rhimou - VAZQUEZ, M. Magnetic Properties of Glass-Coated Amorphous and Nanocrystalline FeMoBCu Microwires. In IEEE Transactions on Magnetics, 2014, vol. 50, no. 11, art. no. 2006303.
2.CAPIK, Marek - ŠVEC, Peter Jr. - MARCIN, Jozef - KOVÁČ, Jozef - SOPKO, Martin - JANIČKOVIČ, Dušan - ŠVEC, Peter - ŠKORVÁNEK, Ivan. Effect of Temperature on Magnetization Processes in Amorphous Rapidly Solidified FeSiB/CoSiB Bilayer Ribbons. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 120-121.
3.VARGA, Marek - MARCIN, Jozef - CAPIK, Marek - JANIČKOVIČ, Dušan - ŠVEC, Peter - ŠKORVÁNEK, Ivan. Magnetoimpedance Effect in Field Annealed (FeNi)78Nb7B15 Amorphous and Nanocrystalline Bilayer Ribbons. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 122-123.
4.ŠKORVÁNEK, Ivan - MARCIN, Jozef - KOVÁČ, J. - ŠVEC, Peter - LUPU, N. - CHIRIAC, H. Tuning of soft magnetic properties in FeCo- and FeNi- based amorphous and nanocrystalline alloys by thermal processing in external magnetic field. In Advanced Materials Research, 2014, vol. 783-786, p. 1937-1942.
5.BLAZQUEZ, Javier- Marcin, Jozef- VARGA, Marek- FRANCO, Victorino- Conde, Alexandro- ŠKORVÁNEK, Ivan. Influence of microstructure on the enhancement of soft magnetic character and the induced anisotropy of field annealed HITPERM-type alloys. In Journal of Applied Physics, 2015, vol. 117, art. no. 17A301.
6.ŠKORVÁNEK, Ivan - MARCIN, Jozef - VARGA, Marek - MAŤKO, Igor - ŠVEC, Peter. Rapidly Quenched Amorphous and Nanocrystalline Bilayer Ribbons for Energy and Sensor Applications. In EMN 2014 : 8th International conference on energy, materials and nanotechnology, 22 - 25 November 2014, Orlando, Florida, SS-06, p. 100, invited lecture.
7.ŠKORVÁNEK, Ivan. Field-annealed Soft Magnetic Amorphous and Nanocrystalline Ribbons with Improved Energy Performance. In CIMTEC 2014 : 6th Forum on New Materials, June 15-19, 2014, Montecatini Terme, Italy, invited lecture.
8.ŠKORVÁNEK, Ivan - MARCIN, Jozef - CAPIK, Marek - VARGA, Marek - JANOTOVÁ, Irena - ŠVEC, Peter. Field-annealed amorphous and nanocrystalline bilayer ribbons with tailorable soft magnetic properties. In MAP6 : 6th International Workshop on Materials Analysis and Processing in Magnetic Fields, 8 - 11 July, 2014, Okinawa, Japan, invited lecture, p. 2-3.
41.) Nanokryštalické a kvázikryštalické kovové systémy s cielene modifikovanou štruktúrou a morfológiou (Nanocrystalline and quasicrystalline metallic systems with tailored structure and morfology)
|Zodpovedný riešiteľ: |Peter Švec |
|Zodpovedný riešiteľ v organizácii SAV: |Ivan Škorvánek |
|Trvanie projektu: |1.7.2012 / 31.12.2015 |
|Evidenčné číslo projektu: |APVV-0492-11 |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: | |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Pokračovalo sa v štúdiu magnetických, magnetokalorických a senzorových charakteristík vybraných rý amorfných a nanokryštalických systémov na báze prechodných kovov a vzácnych zemín. Zvláštna pozornosť bola venovaná optimalizácii ich tepelného spracovania za prítomnosti externého magnetického poľa. Boli prípravené viaceré nové systémy rýchlochladených jedno a dvojvrstvových kovových pások a mikrodrôtov so zlepšenýcmi magnetickými vlastnosťami, ktoré majú sľubný potenciál pre využitie v technickej praxi.
1.PIERUNEK, Natalia - ŚNIADECKI, Zbigniew - MARCIN, Jozef - ŠKORVÁNEK, Ivan - IDZIKOWSKI, Bogdan. Magnetocaloric Effect of Amorphous Gd65Fe10Co10Al10X5 (X = Al, Si, B) Alloys. In IEEE Transactions on Magnetics, 2014, vol. 50, no. 11, art. no. 2506603.
2.KLEIN, Peter - VARGA, Rastislav - ŠKORVÁNEK, Ivan - EL KAMMOUNI, Rhimou - VAZQUEZ, M. Magnetic Properties of Glass-Coated Amorphous and Nanocrystalline FeMoBCu Microwires. In IEEE Transactions on Magnetics, 2014, vol. 50, no. 11, art. no. 2006303.
3.ŚNIADECKI, Zbigniew - MARCIN, Jozef - ŠKORVÁNEK, Ivan - PIERUNEK, Natalia - IDZIKOWSKI, Bogdan. Glassy state formation and magnetic properties of Co-rich ternary RE–Co–B (RE = Y, Tb, Ho) amorphous alloys. In Journal of Alloys and Compounds, 2014, vol. 584, p. 477-482.
4.CAPIK, Marek - ŠVEC, Peter Jr. - MARCIN, Jozef - KOVÁČ, Jozef - SOPKO, Martin - JANIČKOVIČ, Dušan - ŠVEC, Peter - ŠKORVÁNEK, Ivan. Effect of Temperature on Magnetization Processes in Amorphous Rapidly Solidified FeSiB/CoSiB Bilayer Ribbons. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 120-121.
5.GEBARA, P. - PAWLIK, Piotr - ŠKORVÁNEK, Ivan - MARCIN, Jozef - PAWLIK, Katarzyna - PRZYBYL, A. - WYSLOCKI, Jerzy J. - SZWAJA, M. - FILIPECKA, K. Thermomagnetic Properties of LaFe11:0Co0:8(Si1-xAlx)1:2 (x = 0, 0.6) Alloys. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 166-167
6.VARGA, Marek - MARCIN, Jozef - CAPIK, Marek - JANIČKOVIČ, Dušan - ŠVEC, Peter - ŠKORVÁNEK, Ivan. Magnetoimpedance Effect in Field Annealed (FeNi)78Nb7B15 Amorphous and Nanocrystalline Bilayer Ribbons. In Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 122-123.
7.ŠKORVÁNEK, Ivan - MARCIN, Jozef - KOVÁČ, J. - ŠVEC, Peter - LUPU, N. - CHIRIAC, H. Tuning of soft magnetic properties in FeCo- and FeNi- based amorphous and nanocrystalline alloys by thermal processing in external magnetic field. In Advanced Materials Research, 2014, vol. 783-786, p. 1937-1942.
8.BLAZQUEZ, Javier- Marcin, Jozef- VARGA, Marek- FRANCO, Victorino- Conde, Alexandro- ŠKORVÁNEK, Ivan. Influence of microstructure on the enhancement of soft magnetic character and the induced anisotropy of field annealed HITPERM-type alloys. In Journal of Applied Physics, 2015, vol. 117, art. no. 17A301.
9.ŠKORVÁNEK, Ivan - MARCIN, Jozef - CAPIK, Marek - JANIČKOVIČ, Dušan - ŠVEC, Peter. Amorphous and nanocrystalline bilayer ribbons with tailorable magnetic properties. In ICSM 2014: 4th International Conference on Superconductivity and Magnetism, April 27-May 2, 2014, Antalya, Turkey : Abstract Book. - Antalya : Kervansaray Lara-Convention Center and SPA, 2014, p. 339. invited lecture
10.ŠKORVÁNEK, Ivan. Field-annealed Soft Magnetic Amorphous and Nanocrystalline Ribbons with Improved Energy Performance. In CIMTEC 2014 : 6th Forum on New Materials, June 15-19, 2014, Montecatini Terme, Italy, invited lecture.
11.ŠKORVÁNEK, Ivan - MARCIN, Jozef - CAPIK, Marek - VARGA, Marek - JANOTOVÁ, Irena - ŠVEC, Peter. Field-annealed amorphous and nanocrystalline bilayer ribbons with tailorable soft magnetic properties. In MAP6 : 6th International Workshop on Materials Analysis and Processing in Magnetic Fields, 8 - 11 July, 2014, Okinawa, Japan, invited lecture, p. 2-3.
12.ŠKORVÁNEK, Ivan - MARCIN, Jozef - VARGA, Marek - MAŤKO, Igor - ŠVEC, Peter. Rapidly Quenched Amorphous and Nanocrystalline Bilayer Ribbons for Energy and Sensor Applications. In EMN 2014 : 8th International conference on energy, materials and nanotechnology, 22 - 25 November 2014, Orlando, Florida, invited lecture SS-06, p. 100.
42.) Interaktívny zber a spracovanie obrazov v mikroskopii použitím prirodzeného užívateľského rozhrania (Interactive methods of image acquisition and processing in microscopy using natural user interface)
|Zodpovedný riešiteľ: |Zoltán Tomori |
|Trvanie projektu: |1.7.2012 / 31.12.2015 |
|Evidenčné číslo projektu: |APVV-0526-11 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
|Čerpané financie: |APVV: 42160 € |
Dosiahnuté výsledky:
7 časopiseckých publikácii z toho 4 v kategórii "Current Contents". 8 konferenčných príspevkov. Bol realizovaný software umožňujúci ovládanie optickej pinzety pomocou prostriedkov prirodzenej interakcie (pohyby prstov, gestá, oči, hlasové povely).
Programy: Štrukturálne fondy EÚ Regionálny operačný program
43.) SIVVP - Slovenská infraštruktúra pre vysokovýkonné počítanie (The Slovak Infrastructure for High Performance Computing)
|Zodpovedný riešiteľ: |Tomáš Lacko |
|Zodpovedný riešiteľ v organizácii SAV: |Tibor Kožár |
|Trvanie projektu: |15.1.2010 / 31.12.2014 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: |Výpočtové stredisko SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
Programy: Štrukturálne fondy EÚ Výskum a vývoj
44.) Dobudovanie infraštruktúry pre výskum nanosystémov s perspektívou využitia v technickej a medicínskej praxi
|Zodpovedný riešiteľ: |Peter Kopčanský |
|Trvanie projektu: |1.10.2012 / 31.12.2014 |
|Evidenčné číslo projektu: |ITMS 26210120012 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Infraštruktúra ústavu bola v rámci projektu rozšírená o nové experimentálne zariadenia na povrchovú plazmónovú rezonanciu, analytický kvapalinový chromatograf a zariadenie na priamu laserovu prípravu mikro a nanomateriálov.
45.) Extrem II - Dobudovanie Centra pokročilých fyzikálnych štúdii materiálov v extrémnych podmienkach (Extrem II - Center of advanced physical studies for materials in extreme conditions)
|Zodpovedný riešiteľ: |Peter Skyba |
|Trvanie projektu: |28.8.2010 / 31.1.2014 |
|Evidenčné číslo projektu: |ITMS26220120047 |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: |Univerzita P. J. Šafárika v Košiciach |
|Počet spoluriešiteľských inštitúcií: |0 |
Dosiahnuté výsledky:
V priebehu rokov 2013-2014 boli v rámci projektu EXTREM II úplne dobudované alebo dokončené experimentálne laboratória fyziky kondenzovaných látok. Bohatá škála unikátnych experimentálnych metód týchto laboratórií umožňuje komplexný výskum kondenzovaných látok v širokej teplotnej oblasti od mikrokelvinových teplôt, pri vysokých tlakoch až do 1 GPa a magnetických poliach do 10Tesla. Nízkoteplotný AFM umožňuje študovať povrchy tuhých látok s nanometrovým rozlíšením v teplotnej oblasti od 300mK po 1K, pri magnetických poliach do 8T.
46.) Centrum kozmických výskumov: vplyvy kozmického počasia – druhá etapa
|Zodpovedný riešiteľ: |Ján Svoreň |
|Zodpovedný riešiteľ v organizácii SAV: |Karel Kudela |
|Trvanie projektu: |1.3.2010 / 30.6.2014 |
|Evidenčné číslo projektu: | ITMS 26220120029 |
|Organizácia je koordinátorom projektu: |nie |
|Koordinátor: |Astronomický ústav SAV, Svoreň Ján Doc., RNDr. DrSc. |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Obstarávanie nových prístrojov a zariadení v období do júna 2014. Uvedenie do prevádzky meraní v kontinuálnom režime s online výstupom zariadenia SEVAN na Lomnickom štíte v marci 2014.
S poďakovaním projektu bola prezentovaná prehľadová prednáška [1] a príspevok [2]. V r. 2014 boli publikované články v currentovaných časopisoch s poďakovaním projektu [3-5]. S poďakovaním úlohe 1. etapy bola publikovaná práca [6].
1. K. Kudela, Využitie pozemných meraní kozmického žiarenia v štúdiu a predpovediach efektov kozmického počasia, prednáška, abstrakt na , 22. Celoštátny slnečný seminár, Nižná n. Oravou, 20.- 26. mája 2014.
2. Igor Strhárský, Ronald Langer a Karel Kudela, Záznamový systém pre meranie kozmického žiarenia na Lomnickom Štíte, 22. Celoštátny slnečný seminár, Nižná n. Oravou, 20.- 26. mája 2014.
3. E. Jurčišinová and M. Jurčišin, Solution of the antiferromagnetic Ising model on a tetrahedron recursive lattice, PHYSICAL REVIEW E 89, 032123 (2014)
4. E. Jurčišinová, M. Jurčišin, The second order phase transitions of the Ising model on tetrahedron recursive lattices: Exact results,Physics Letters A 378 (2014) 1059–1064
5. E. Jurčišinová, M. Jurčišin, A. Bobák,The Exact Solution of the Anti-ferromagnetic Ising Model with Multisite Interaction on the Simplest Pure
Husimi Lattice, J Stat Phys (2014) 154:1096–1112
6. E. Jurčišinová and M. Jurčišin, Solution of the antiferromagnetic Ising model with multisite interaction on a zigzag ladder, PHYSICAL REVIEW E 90, 032108 (2014)
Programy: Štrukturálne fondy EÚ Vzdelávanie
47.) Medzinárodné virtuálne laboratórium fyziky progresívnych materiálov - PhysNet
|Zodpovedný riešiteľ: |Alena Juríková |
|Trvanie projektu: |1.9.2013 / 31.8.2015 |
|Evidenčné číslo projektu: |ITMS 26110230097 |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Pokračuje proces zavedenia nového odboru doktorandského štúdia na ÚEF - Biofyzika. Projekt umožnil v školskom roku 2014/2015 pôsobenie 4 doktorandov nad rámec možností ÚEF. V súvislosti s ďalším vzdelávaním odborného personálu a doktorandov boli realizované pobyty zahraničných expertov na našom pracovisku. Odborní pracovníci a doktorandi sa zúčastnili pracovných pobytov na zahraničných pracoviskách.
Programy: Centrá excelentnosti SAV
48.) Centrum fyziky nízkych teplôt a materiálového výskumu v extrémnych podmienkach (Centre of Low Temperature Physics And Material Research at Extreme Conditions )
|Zodpovedný riešiteľ: |Peter Samuely |
|Trvanie projektu: |1.7.2011 / 30.6.2015 |
|Evidenčné číslo projektu: | |
|Organizácia je koordinátorom projektu: |áno |
|Koordinátor: |Ústav experimentálnej fyziky SAV |
|Počet spoluriešiteľských inštitúcií: |0 |
| | |
Dosiahnuté výsledky:
Centrum pokračovalo vo svojich aktivitách podľa plánu. O jeho tohoročných výsledkoch svedčí zoznam publikácií, ktoré vznikli s podporou grantu:
CFNT MVEP
S. Gabáni, I. Takáčová, G. Pristaš, E. Gažo, K. Flachbart, T. Mori, D. Braithwaite, M. Misek, K.V. Kamenev, M. Hanfland, and P. Samuely: High-pressure effect on the superconductivity of YB6,
Phys. Rev. B 90, 045136 (2014).
I. Čurlik, M. Giovannini, J. G. Sereni, M. Zapotoková, S. Gabáni, and M. Reiffers: Extremely high density of magnetic excitations at T=0 in YbCu5-xAux,
Phys. Rev. B 90, 224409 (2014).
M. Človečko, E. Gažo, S. Longauer, E. Múdra, P. Skyba, F. Vavrek, M. Vojtko: Vacuum Measurements of a Novel Micro-resonator Based on Tin Whiskers Performed at mK Temperatures,
Journal of Low Temperature Physics 175, 449-455 (2014).
G. Pristaš, S. Gabáni, E. Gažo, V. Komanický, M. Orendáč, H. You: Influence of hydrostatic pressure on superconducting properties of niobium thin film,
Thin Solid Films 556, 470 (2014).
O.A. Mironov, A.H.A. Hassan, R.J.H. Morris, A. Dobbie, M. Uhlarz, D. Chrastina, J.P. Hague, S. Kiatgamolchai, R. Beanland, S. Gabani, I.B. Berkutovh, M. Helmi, O. Drachenko, M. Myronov, D.R. Leadley: Ultra high hole mobilities in a pure strained Ge quantum well,
Thin Solid Films 557, 329 (2014).
M. Sindler, R. Tesar, J. Kolacek, P. Szabo, P. Samuely, V. Haskova, C. Kadlec, F. Kadlec, P. Kuzel:
Far-infrared electrodynamics of thin superconducting NbN film in magnetic fields,
Supercond. Sci. Technol. 27 055009 (2014).
K. Nishiyama, T. Mito, G. Pristáš, Y. Hara, T. Koyama, K. Ueda, T. Kohara, Y. Akahama, S. Gabáni, M. Reiffers, K. Flachbart, H. Fukazawa, Y. Kohori, N. Takeshita and N. Shitsevalova:
NMR Investigation of Pressure Effect on Intermediate Valence Compound SmB6,
JPS Conf. Proc. 3, 011085 (2014).
G. Pristáš, S. Gabáni, K. Flachbart, V. Filipov, and N. Shitsevalova:
Investigation of the Energy Gap in Sm1-xB6 and Sm1-xLaxB6 Kondo Insulators,
JPS Conf. Proc. 3, 012021 (2014).
V. S. Bilanych, F. Lofaj, K. Flachbart, K. Csach, V. V. Kuz'ma, and V. M. Rizak
Nanoindentation of Amorphous Ge–As–Se Films
Physics of the Solid State 56, 1163 (2014).
K. Synoradzki, T. Tolinski, G. Chelkowska, A. Bajorek, M. Zapotokov8, M. Reiffers, A. Hoser:
X-ray photoemision, calorimetric, and electrical transport properties of CeCu4MnyAl1-y
Journal of Alloys and Compounds 601, 43 (2014).
A.P. Goncalves, M.S. Henriques, J.C. Waerenborgh, I. Čurlik, S. Iľkovič, M. Reiffers:
On the crystal structure and physical properties of the UFeSb2 compound
Journal of Alloys and Compounds 601, 43 (2014).
S. Nallamuthu, T.P. Rashid, V. Krishnakumar, C. Besnard, H. Hagemann, M. Reiffers, R. Nagalakshmi: Anisotropic magnetic, transport and thermodynamic properties of novel tetragonal Ce2RhGa12 compound,
Journal of Alloys and Compounds 604, 379 (2014).
M. Anisimov, A. Bogach, V. Glushkov, S. Demishev, N. Samarin, N. Shitsevalova, A. Levchenko, V. Filippov, A. Kuznetsov, K. Flachbart, N. Sluchanko:
Hall Effect in GdB6,
Acta Physica Polonica 126, 348 (2014).
M. Anisimov, A. Bogach, V. Glushkov, S. Demishev, N. Samarin, S. Gavrilkin, K. Mitsen, N. Shitsevalova, A. Levchenko, V. Filippov, S. Gabani, K. Flachbart, N. Sluchanko:
Defect Mode in LaB6,
Acta Physica Polonica 126, 350 (2014).
S. Gabáni, G. PristáŠ, I. Takáčová, K. Flachbart, V. Filipov, N. Shitsevalova, K. Siemensmeyer:
Magnetic Phase Diagram of TmB4 under High Pressure,
Acta Physica Polonica 126, 356 (2014).
S. Gabáni, K. Flachbart, J. Bednarčík, E. Welter, V. Filipov, N. Shitsevalova,
Investigation of Mixed Valence State of Sm1-xB6 and Sm1-xLaxB6 by XANES
Acta Physica Polonica 126, 338 (2014).
S. Gabáni, G. Pristáš, I. Takáčová, K. Flachbart, E. Gažo, T. Mori, D. Braithwaite, P. Samuely,
Influence of Pressure on Superconductivity in YB6
Acta Physica Polonica 126, 340 (2014).
G. Pristáš, S. Gabáni, M. Orendáč, V. Komanický, E. Gažo:Study of Niobium Thin Films under Pressure
Acta Physica Polonica 126, 346 (2014).
N.E. Sluchanko, A.N. Azarevich, A.V. Bogach, V.V. Glushkov, S.V. Demishev, S.YU. Gavrilkin, S. Gabani, K. Flachbart, N.Yu. Shitsevalova, V.B. Filipov, J. Vanacken, V.V. Moshchalov, J. Stankiewicz:
Magnetoresistance Anisotropy and Magnetic H-T Phase Diagram of Tm0.996Yb0.004B12
Acta Physica Polonica 126, 332 (2014).
P. Szabó, P. Neilinger, M. Trgala, M. Grajcar, P. Samuely: Superconductivity Near Transition to Insulating State in MoC Ultrathin Films Studied by Subkelvin STM,
Acta Physica Polonica 126, 368 (2014).
Z. Pribulová, Z. Medvecká, J. Kačmarčík, V. Komanický, T. Klein, P. Husaníková, V. Cambel, J. Šoltýs, G. Karapetrov, P. Samuely: Local Magnetometry of Cu0.064TiSe2,
Acta Physica Polonica 126, 370 (2014).
J. Kačmarčík, Z. Pribulová, V. Paľuchová, P. Husaníková, G. Karapetrov, V. Komanický, P. Samuely:
Specific Heat Study of Superconductivity in Cu0.061TiSe2,
Acta Physica Polonica 126, 322 (2014).
M. Botko, V. Cheranovskii, G. Vasilets, E. Čižmár, M. Kajňáková, A.G. Anders, V. Starodub and A. Feher: Magnetic properties of an S=2 ladder spin model applied to a new quasi-one-dimensional magnet [Mn(phen)3](TCNQ)2.H2O,
Acta Physica Polonica 126, 20 (2014).
R. Tarasenko, A. Orendáčová, E. Čižmár, S. Maťaš, M. Orendáč, V. Zaleňák, V. Pavlík, K. Siemensmeyer, S. Zvyagin, J. Wosnitza, A. Feher: Neutron and EPR study of Cu(tn)Cl2 – a two-dimensional spatially anisotropic triangular-lattice antigerromagnet,
Acta Physica Polonica 126, 232 (2014).
M. Botko, E. Čižmár, M. Kajňáková, A. Feher: EPR spectra of the genuine-organic and metal-organic TCNQ-based anion radical salts,
Acta Physica Polonica 126, 252 (2014).
V. Komanický, S. Bunda, M. Botko, and V. Bunda: Anizotropy of photoconductivity in BiOCl (X=Cl, Br, I) single crystals,
Acta Physica Polonica 126, 274 (2014).
V. Bunda, S. Bunda, V. Komanický, M. Botko, E. Čižmár and A. Feher: Application of superconductor/Photosemiconductor Contact Structures in Electronics,
Acta Physica Polonica 126, 362(2014).
V. Komanický, A. Barbour, M. Lackova, M. Zorko, C. Zhu, M. Pierce and H. You: Growth of arrays of oriented epitaxial platinum nanoparticles with controlled size and shape by natural colloidal lithography,
Nanoscale Research Letters 9, 336 (2014).
M. Timmermans, T. Samuely, B. Raes, J. Van de Vondel, V. V. Moshchalkov: Dynamic Visualization of Nanoscale Vortex Orbits,
ACS Nano 8, no. 3 (2014), s. 2782-2787.
G. Zhang, S. Turner, E. A. Ekimov, J. Vanacken, M. Timmermans, T. Samuely, Vl. A. Sidorov, S. M. Stishov, Y. Lu, B. Deloof, B. Goderis, G. Van Tendeloo, J. Van de Vondel, V. V. Moshchalkov: Global and Local Superconductivity in Boron-Doped Granular Diamond,
Advanced Materials 26 (2014), s. 2034-2040.
M. Timmermans, T. Samuely, B. Raes, J. Van de Vondel, V. V. Moshchalkov: Observing vortex motion on NbSe2 with STM,
Physica C 503 (2014), s. 154-157.
Y.-C. Chen, F.-S. Guo, J.-L. Liu, J.-D. Leng, P. Vrábel, M. Orendáč,[b] J. Prokleška,[c] V. Sechovský, and M.-L. Tong: Switching of the Magnetocaloric Effect of MnII Glycolate by Water Molecules,
Chem. Eur. J. 2014, 20, 3029.
Y.-C. Chen, L. Qin, Z.-S. Meng, D.-F. Yang, C. Wu, Z. Fu, Y.-Z. Zheng, J.-L. Liu, R. Tarasenko, M. Orendáč, J. Prokleška, V. Sechovský and M.-L. Tong: Study of a magnetic-cooling material Gd(OH)CO3,
J. Mater. Chem. A, 2014, 2, 9851.
M. Iacob, M. Cazacu, C. Racles, M. Ignat, V. Cozan, L. Sacarescu, D. Timpu, M. Kajňáková, M. Botko, A. Feher and C. Turt: Iron–chromium oxide nanoparticles selfassembling into smectic mesophases,
RSC Adv., 2014, 4, 6293.
M. Bl'anda, A. Duszová, T. Csanádi, P. Hvizdoš, F. Lofaj, J. Dusza: Indentation fatigue of WC grains in WC–Co composite,
Journal of the European Ceramic Society 34 (2014) 3407–3412
M. Bľanda, A. Duszová, T. Csanádi, P. Hvizdoš, F. Lofaj, J. Dusza: Indentation hardness and fatigue of the constituents of WC–Co composites,
Int. Journal of Refractory Metals and Hard Materials, ARTICLE IN PRESS - ONLINE
T. Csanádi, M. Bl'anda, A. Duszová, N. Q.Chinh, P. Szommer, J. Dusza: Short Communication Deformation characteristics of WC micropillars,
Journal of the European Ceramic Society 34 (2014) 4099–4103
T. Csanádi, N. Q. Chinh, P. Szommer, J. Dusza, Z. Lenčés, P. Šajgalík: Deformation and Fracture of ?-Silicon Nitride Micropillars,
Journal of the American Ceramic Society 1– 4 (2014)
P. Diko, Cracking caused by thermal and transformation stresses in YBCO composite superconductors,
International Journal of Materials and Product Technology (IJMPT), Vol. 49, No. 2/3, 2014
D. Volochová, K. Jurek, M. Radušovská, S. Piovarči, V. Antal, J. Kováč, M. Jirsa, P. Diko: Contamination of YBCO Bulk Superconductors by Samarium and Ytterbium,
Physica C. 2014, vol. 496, p. 14-17.
M. Jirsa, M. Rameš, D. Volochová, M. Radušovská, P. Diko: Electromagnetic Properties of Melt-Grown YBaCuO Superconductors Doped by Gd and Sm,
Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 326-327.
K. Zmorayová, V. Antal, S. Piovarči, M. Radušovská, J. Kováč, P. Diko: Microstructure and Properties of La-Ca-Sr-Mn-O Magnetocaloric Ceramics,
Acta Physica Polonica, Vol. 126, No. 1, 2014, 168 - 169.
D. Volochová, K. Jurek, M. Radušovská, S. Piovarči, V. Antal, J. Kováč, M. Jirsa, P. Diko: Influence of Sm and Yb Pollution on Superconducting Properties of YBCO Bulk Superconductors,
Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 358-359.
S. Piovarči, V. Antal, M. Kaňuchová, M. Radušovská, P. Diko: Changes in YBCO singlegrain bulk superconductor exposed to air moisture,
Acta Physica Polonica, Vol. 126, No. 1, 2014, 364 - 365.
K. Zmorayová, V. Antal, M. Radušovská, S. Piovarči, D. Volochová, P. Diko: Microstructure and Properties of Y-123/Y-211 Bulk Superconductors with BaCeO3 and BaO2 Addition,
Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 366-367.
K. Zmorayová, S. Piovarči, M. Radušovská, V. Antal, V. Kavečanský, P. Diko: The Influence of Sintering Conditions on Microstructure of La-Ca-Sr-Mn-O Magnetocaloric Ceramics,
Materials Science Forum, 2014, vol. 782, p. 503-506.
K. Zmorayová, S. Piovarči, M. Radušovská, V. Antal, P. Diko: Influence of BaCeO3 and BaO2 Addition on the Microstructure of Y-123/Y-211 Bulk Supercondustors,
Materials Science Forum, 2014, vol. 782, p. 549-552.
P. Kesa, I. Hrmo, P. Diko, M. Antalik, Graphite Polystyrenesulfonate Composite Material,
Materials Science Forum, 782 (2014) 537-540.
M. Šefčíková, S. Piovarčí, M. Radušovská, V. Antal, P. Diko: The Influence of Y211 Milling Conditions on the Microstructure of Y123/Y211 Bulk Superconductors,
In Materials Science Forum.
S. Piovarci, V. Antal, D. Volochova, P. Diko, “High-pressure oxygenation of YBCO bulk superconductors” Proceedings of 20th Conference of Slovak Physicist (2014) 69-70
P. Baláž, M. Baláž, M. Čaplovičová, A. Zorkovská, Ľ. Čaplovič, M. Psotka: The dual role of sulfur-containing amino acids in the synthesis of IV–VI semiconductor nanocrystals: a mechanochemical approach,
Faraday Disscusions (IF 2013 = 4.194) 170 (2014) 169-179.
P. Baláž, M.J. Sayagués, M. Baláž, A. Zorkovská, P. Hronec, J. Kováč jr. J. Kováč, E. Dutková, G. Mojžišová, J. Mojžiš: CdSe@ZnS nanocomposites prepared by a mechanochemical route: No release of Cd2+ ions and negligible in vitro cytotoxicity,
Materials Research Bulletin (IF2013 = 1.968) 49 (2014) 302-309.
M. Baláž. Eggshell membrane biomaterial as a platform for applications in materials science,
Acta Biomaterialia (IF2013 = 5.684) 10 (2014) 3827-3843.
M. Capik,P. Švec Jr.,J. Marcin,J. Kováč, M. Sopko,D. Janičkovič, P. Švec, I. Škorvánek: Effect of Temperature on Magnetization Processes in Amorphous Rapidly Solidified FeSiB/CoSiB Bilayer Ribbons,
Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 120-121.
P. Gebara, P. Pawlik, I. Škorvánek, J. Marcin, K. Pawlik, A. Przybyl, J.J. Wyslocki, M. Szwaja, K. Filipecka: Thermomagnetic Properties of LaFe11:0Co0:8(Si1-xAlx)1:2 (x = 0, 0.6) Alloys,
Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 166-167
M. Varga, J. Marcin, M. Capik, D. Janičkovič, P. Švec, I. Škorvánek: Magnetoimpedance Effect in Field Annealed (FeNi)78Nb7B15 Amorphous and Nanocrystalline Bilayer Ribbons,
Acta Physica Polonica A, 2014, vol. 126, no. 1, p. 122-123.
I. Škorvánek, J. Marcin, J. Kováč, P. Švec, N. Lupu, H. Chiriac: Tuning of soft magnetic properties in FeCo- and FeNi- based amorphous and nanocrystalline alloys by thermal processing in external magnetic field,
Advanced Materials Research, 2014, vol. 783-786, p. 1937-1942.
Príloha C
Publikačná činnosť organizácie (generovaná z ARL)
ADCA Vedecké práce v zahraničných karentovaných časopisoch impaktovaných
|ADCA01 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for direct top squark pair production in events |
| |with a Z boson, b-jets and missing transverse momentum in s = 8 TeV pp collisions with the ATLAS detector (ATLAS |
| |Collaboration). In European Physical Journal C, 2014, vol. 74, no. 6, art. no. 2883. (5.436 - IF2013). (2014 - Current |
| |Contents, WOS, SCOPUS). ISSN 1434-6044. |
|ADCA02 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. The differential production cross section of the φ(1020) |
| |meson in s = 7 TeV pp collisions measured with the ATLAS detector (ATLAS Collaboration). In European Physical Journal C, |
| |2014, vol. 74, no. 7, art. no. 2895. (5.436 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1434-6044. |
|ADCA03 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Electron reconstruction and identification efficiency |
| |measurements with the ATLAS detector using the 2011 LHC proton–proton collision data (ATLAS Collaboration). In European |
| |Physical Journal C, 2014, vol. 74, no. 7, art. no. 2941. (5.436 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN |
| |1434-6044. |
|ADCA04 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the underlying event in jet events from 7 |
| |TeV proton–proton collisions with the ATLAS detector (ATLAS Collaboration). In European Physical Journal C, 2014, vol. |
| |74, no. 8, art. no. 2965. (5.436 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1434-6044. |
|ADCA05 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the centrality and pseudorapidity |
| |dependence of the integrated elliptic flow in lead–lead collisions at s = 2.76 TeV with the ATLAS detector (ATLAS |
| |Collaboration). In European Physical Journal C, 2014, vol. 74, no. 8, art. no. 2982. (5.436 - IF2013). (2014 - Current |
| |Contents, WOS, SCOPUS). ISSN 1434-6044. |
|ADCA06 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Light-quark and gluon jet discrimination in pp collisions |
| |at s = 7 TeV with the ATLAS detector (ATLAS Collaboration). In European Physical Journal C, 2014, vol. 74, no. 8, art. |
| |no. 3023. (5.436 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1434-6044. |
|ADCA07 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Muon reconstruction efficiency and momentum resolution of |
| |the ATLAS experiment in proton–proton collisions at s = 7 TeV in 2010 (ATLAS Collaaboration). In European Physical |
| |Journal C, 2014, vol. 74, no. 9, art. no. 3034. (5.436 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1434-6044.|
|ADCA08 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Electron and photon energy calibration with the ATLAS |
| |detector using LHC Run 1 data (ATLAS Collaboration). In European Physical Journal C, 2014, vol. 74, no. 10, art. no. |
| |3071. (5.436 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1434-6044. |
|ADCA09 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the t t production cross-section using eμ |
| |events with b-tagged jets in pp collisions at s = 7 and 8 TeV with the ATLAS detector (ATLAS Collaboration). In European |
| |Physical Journal C, 2014, vol. 74, no. 10, art. no. 3109. (5.436 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN |
| |1434-6044. |
|ADCA10 |AAD, G. - STRÍŽENEC, Pavol - BRUNCKO, Dušan - KLADIVA, Eduard. Performance of the ATLAS Liquid Argon Calorimeter after |
| |three years of LHC operation and plans for a future upgrade (ATLAS Collaboration). In Journal of Instrumentation, 2014, |
| |vol. 9, art. no. C09007. (1.526 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1748-0221. |
|ADCA11 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Standalone vertex finding in the ATLAS muon spectrometer |
| |(ATLAS Collaborarion). In Journal of Instrumentation, 2014, vol. 9, art. no. P02001. (1.526 - IF2013). (2014 - Current |
| |Contents, WOS, SCOPUS). ISSN 1748-0221. |
|ADCA12 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Operation and performance of the ATLAS semiconductor |
| |tracker (ATLAS Collaboration). In Journal of Instrumentation, 2014, vol. 9, art. no. P08009. (1.526 - IF2013). (2014 - |
| |Current Contents, WOS, SCOPUS). ISSN 1748-0221. |
|ADCA13 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurements of jet vetoes and azimuthal decorrelations in|
| |dijet events produced in pp collisions at s = 7 TeV using the ATLAS detector (ATLAS Collaboration). In European Physical |
| |Journal C, 2014, vol. 74, no. 11, art. no. 3117. (5.436 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN |
| |1434-6044. |
|ADCA14 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the muon reconstruction performance of the |
| |ATLAS detector using 2011 and 2012 LHC proton–proton collision data (ATLAS Collaboration). In European Physical Journal |
| |C, 2014, vol. 74, no. 11, art. no. 3130. (5.436 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1434-6044. |
|ADCA15 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of flow harmonics with multi-particle |
| |cumulants in Pb+Pb collisions at SNN = 2.76 TeV with the ATLAS detector (ATLAS Collaboration). In European Physical |
| |Journal C, 2014, vol. 74, no. 11, art. no. 3157. (5.436 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN |
| |1434-6044. |
|ADCA16 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for contact interactions and large extra dimensions|
| |in the dilepton channel using proton-proton collisions at s = 8 TeV with the ATLAS detector (ATLA Collaboration). In |
| |European Physical Journal C, 2014, vol. 74, no. 12, art. no. 3134. (5.436 - IF2013). (2014 - Current Contents, WOS, |
| |SCOPUS). ISSN 1434-6044. |
|ADCA17 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. A measurement of the ratio of the production cross |
| |sections for W and Z bosons in association with jets with the ATLAS detector (ATLAS Collaboration). In European Physical |
| |Journal C, 2014, vol. 74, no. 12, art. no. 3168. (5.436 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN |
| |1434-6044. |
|ADCA18 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of distributions sensitive to the underlying |
| |event in inclusive Z-boson production in pp collisions at s = 7 TeV with the ATLAS detector (ATLAS Collaboration). In |
| |European Physical Journal C, 2014, vol. 74, no. 12, art. no. 3195. (5.436 - IF2013). (2014 - Current Contents, WOS, |
| |SCOPUS). ISSN 1434-6044. |
|ADCA19 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the top quark pair production charge |
| |asymmetry in proton-proton collisions at s = 7 TeV using the ATLAS detector (ATLAS Collaboration). In Journal of High |
| |Energy Physics, 2014, vol. 2014, no. 2, art. no. 107. (6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN |
| |1126-6708. |
|ADCA20 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the electroweak production of dijets in |
| |association with a Z-boson and distributions sensitive to vector boson fusion in proton-proton collisions at s = 8 TeV |
| |using the ATLAS detector (ATLAS Collaboration). In Journal of High Energy Physics, 2014, vol. 2014, no. 4, art. no. 031. |
| |(6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA21 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for direct production of charginos and neutralinos |
| |in events with three leptons and missing transverse momentum in s = 8 TeV pp collisions with the ATLAS detector (ATLAS |
| |Collaboration). In Journal of High Energy Physics, 2014, vol. 2014, no. 4, art. no. 169. (6.220 - IF2013). (2014 - |
| |Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA22 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the production cross section of prompt |
| |J/psí mesons in association with a W+- boson in pp collisions at s = 7 TeV with the ATLAS detector (ATLAS Collaboration).|
| |In Journal of High Energy Physics, 2014, vol. 2014, no. 4, art. no. 172. (6.220 - IF2013). (2014 - Current Contents, WOS,|
| |SCOPUS). ISSN 1126-6708. |
|ADCA23 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of dijet cross-sections in pp collisions at 7 |
| |TeV centre-of-mass energy using the ATLAS detector (ATLAS Collaboration). In Journal of High Energy Physics, 2014, vol. |
| |2014, no. 5, art. no. 059. (6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA24 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the production of a W boson in association |
| |with a charm quark in pp collisions at s = 7 TeV with the ATLAS detector (ATLAS Collaboration). In Journal of High Energy|
| |Physics, 2014, vol. 2014, no. 5, art. no. 068. (6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA25 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for direct production of charginos, neutralinos and|
| |sleptons in final states with two leptons and missing transverse momentum in pp collisions at s = 8 TeV with the ATLAS |
| |detector (ATLAS Collaboration). In Journal of High Energy Physics, 2014, vol. 2014, no. 5, art. no. 071. (6.220 - |
| |IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA26 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for top quark decays t -qH with H - gama gama using|
| |the ATLAS detector (ATLAS Collaboration). In Journal of High Energy Physics, 2014, vol. 2014, no. 6, art. no. 008. (6.220|
| |- IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA27 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for supersymmetry at s = 8 TeV in final states with|
| |jets and two same-sign leptons or three leptons with the ATLAS detector (ATLAS Collaboration). In Journal of High Energy |
| |Physics, 2014, vol. 2014, no. 6, art. no. 035. (6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA28 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the low-mass Drell-Yan differential cross |
| |section at s = 7 TeV using the ATLAS detector (ATLAS Collaboration). In Journal of High Energy Physics, 2014, vol. 2014, |
| |no. 6, art. no. 112. (6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA29 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for direct top-squark pair production in final |
| |states with two leptons in pp collisions at s = 8 TeV with the ATLAS detector (ATLAS Collaboration). In Journal of High |
| |Energy Physics, 2014, vol. 2014, no. 6, art. no. 124. (6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN |
| |1126-6708. |
|ADCA30 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of Xc1 and Xc2 production with s = 7 TeV pp |
| |collisions at ATLAS (ATLAS Collaboration). In Journal of High Energy Physics, 2014, vol. 2014, no. 7, art. no. 154. |
| |(6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA31 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for microscopic black holes and string balls in |
| |final states with leptons and jets with the ATLAS detector at s = 8 TeV (ATLAS Collaboration). In Journal of High Energy |
| |Physics, 2014, vol. 2014, no. 8, art. no. 103. (6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA32 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for direct pair production of the top squark in |
| |all-hadronic final states in proton-proton collisions at s = 8 TeV with the ATLAS detector (ATLAS Collaboration). In |
| |Journal of High Energy Physics, 2014, vol. 2014, no. 9, art. no. 015. (6.220 - IF2013). (2014 - Current Contents, WOS, |
| |SCOPUS). ISSN 1126-6708. |
|ADCA33 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for new particles in events with one lepton and |
| |missing transverse momentum in pp collisions at s = 8 TeV with the ATLAS detector (ATLAS Collaboration). In Journal of |
| |High Energy Physics, 2014, vol. 2014, no. 9, art. no. 037. (6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN|
| |1126-6708. |
|ADCA34 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the production cross-section of psí (2S) - |
| |J/psí(-mí+mí-)pí+pí- in pp collisions at s = 7 TeV at ATLAS (ATLAS Collaboration). In Journal of High Energy Physics, |
| |2014, vol. 2014, no. 9, art. no. 079. (6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA35 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for supersymmetry in events with large missing |
| |transverse momentum, jets, and at least one tau lepton in 20 fb-1 of s = 8 TeV proton-proton collision data with the |
| |ATLAS detector (ATLAS Collaboration). In Journal of High Energy Physics, 2017, vol. 2014, no. 9, art. no. 103. ISSN |
| |1126-6708. |
|ADCA36 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurements of fiducial and differential cross sections |
| |for Higgs boson production in the diphoton decay channel at s = 8 TeV with ATLAS (ATLAS Collaboration). In Journal of |
| |High Energy Physics, 2014, vol. 2014, no. 9, art. no. 112. (6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN|
| |1126-6708. |
|ADCA37 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the Z/gama* boson transverse momentum |
| |distribution in pp collisions at s = 7 TeV with the ATLAS detector (ATLAS Collaboration). In Journal of High Energy |
| |Physics, 2014, vol. 2014, no. 9, art. no. 145. (6.220 - IF2013). (2014 - Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA38 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for squarks and gluinos with the ATLAS detector in |
| |final states with jets and missing transverse momentum using s = 8 TeV proton-proton collisions data (ATLAS |
| |Collaboration). In Journal of High Energy Physics, 2014, vol. 2014, no. 9, art. no. 176. (6.220 - IF2013). (2014 - |
| |Current Contents, WOS, SCOPUS). ISSN 1126-6708. |
|ADCA39 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for strong production of supersymmetric particles |
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|ADCA40 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for the direct production of charginos, neutralinos|
| |and staus in final states with at least two hadronically decaying taus and missing transverse momentum in pp collisions |
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|ADCA41 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of differential production cross-sections for |
| |a Z boson in association with b-jets in 7 TeV proton-proton collisions with the ATLAS detector (ATLAS Collaaboration). In|
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|ADCA42 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for neutral Higgs bosons of the minimal |
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|ADCA43 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for pair and single production of new heavy quarks |
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|ADCA44 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for top squark pair production in final states with|
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|ADCA45 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Monitoring and data quality assessment of the ATLAS liquid|
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|ADCA46 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the cross-section of high transverse |
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|ADCA47 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the total cross section from elastic |
| |scattering in ppcollisions at s = 7 TeV with the ATLAS detector (ATLAS Collaboration). In Nuclear Physics B, 2014, vol. |
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|ADCA48 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. A neural network clustering algorithm for the ATLAS |
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|ADCA49 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of event-plane correlations in SNN = 2.76 TeV |
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| |azimuthal harmonics in SNN = 5.02 TeV proton-lead collisions with the ATLAS detector (ATLAS Collaboration). In Physical |
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|ADCA51 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for a multi-Higgs-boson cascade in WþW−b¯b events |
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|ADCA53 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Study of heavy-flavor quarks produced in association with |
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|ADCA54 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the parity-violating asymmetry parameter |
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|ADCA56 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for supersymmetry in events with four or more |
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|ADCA57 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Measurement of the Higgs boson mass from the H - gama gama|
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|ADCA58 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for high-mass dilepton resonances in pp collisions |
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|ADCA60 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for pair-produced third-generation squarks decaying|
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|ADCA68 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for the lepton flavor violating decay Z - eμ in pp|
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|ADCA69 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Comprehensive measurements of t-channel single top-quark |
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|ADCA74 |AAD, G. - BRUNCKO, Dušan - KLADIVA, Eduard - STRÍŽENEC, Pavol. Search for Quantum Black Hole Production in |
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| |Addition on the Microstructure of Y-123/Y-211 Bulk Supercondustors. In Materials Science Forum, 2014, vol. 782, p. |
| |549-552. (2014 - WOS, SCOPUS). ISSN 0255-5476. |
AED Vedecké práce v domácich recenzovaných vedeckých zborníkoch (aj konferenčných), monografiách
|AED01 |BARTA, Andrej - CEBOVÁ, Martina - KLIMENTOVÁ, Jana - VRANKOVÁ, Stanislava - MATÚŠKOVÁ, Zuzana - REHÁKOVÁ, Radoslava - |
| |KOVÁCSOVÁ, Mária - ZÁVIŠOVÁ, Vlasta - KONERACKÁ, Martina - KOPČANSKÝ, Peter - PECHÁŇOVÁ, Oľga. Structural changes in |
| |myocardium and aorta after aliskiren-induced inhibition of renin-angiotensin-aldosterone system. In Proceedings of the |
| |Joint Meeting of the 8th International Symposium Nitric Oxide: From Basic Regulations to Lifestyle-Related Diseases and |
| |the 2nd Genetic and Environmental Factors in Hypertension : Vrsar, Croatia, September 15-19, 2014. - Bratislava : |
| |Institute of Normal and Pathological Physiology, Slovak Academy of Sciences, 2014, p. 70-75. ISBN 978-80-971699-0-9. VEGA|
| |2/0183/12, 2/0144/14; APVV-0742-10, ITMS 26240120020, CEKOMAT II. |
|AED02 |PECHÁŇOVÁ, Oľga - CEBOVÁ, Martina - VRANKOVÁ, Stanislava - KLIMENTOVÁ, Jana - BARTA, Andrej - MATÚŠKOVÁ, Zuzana - |
| |REHÁKOVÁ, Radoslava - KOVÁCSOVÁ, Mária - ZÁVIŠOVÁ, Vlasta - KONERACKÁ, Martina - KOPČANSKÝ, Peter. Nitric oxide and |
| |inhibition of renin-angiotensin-aldosterone system: focussed on aliskiren. In Proceedings of the Joint Meeting of the 8th|
| |International Symposium Nitric Oxide: From Basic Regulations to Lifestyle-Related Diseases and the 2nd Genetic and |
| |Environmental Factors in Hypertension : Vrsar, Croatia, September 15-19, 2014. - Bratislava : Institute of Normal and |
| |Pathological Physiology, Slovak Academy of Sciences, 2014, p. 64-69. ISBN 978-80-971699-0-9. VEGA 2/0183/12, 2/0144/14; |
| |APVV-0742-10. |
AFA Publikované pozvané príspevky na zahraničných vedeckých konferenciách
|AFA01 |FLACHBART, Karol. Nature of electrical conductivity in topological insulatol SmB6 at low temperatures. In ISBB 2014 : |
| |18th International Symposium on Boron, Borides and Related Materials, August 31 - September 5, 2014, Honolulu, Hawaii, |
| |USA, invited talk. |
|AFA02 |GAŽOVÁ, Zuzana. „Amyloidaggregationofproteins – focus on inhibitors”. In Institute of Nanostructure Materials ISMN-CNR, |
| |28 November 2014, Bologna, Italy, invited talk. |
|AFA03 |GAŽOVÁ, Zuzana. Interaction of magnetic nanoparticles with protein amyloid structures. In Seminário do INCT/GFCx, |
| |University de Sao Paulo, 11.4. 2014, Sao Paulo, Brasil, invited talk. |
|AFA04 |KONERACKÁ, Martina. Immobilization of biologically active substances to magnetic nanoparticles. In Seminário do |
| |INCT/GFCx, University de Sao Paulo, 11.4. 2014, Sao Paulo, Brasil, invited talk. |
|AFA05 |KOPČANSKÝ, Peter. How to induce high sensitivity of liquid crystal to external magnetic field? In PM 2014 : European |
| |Conference Physics of Magnetism, June 23 - 27, 2014, Poznaň, Poland, invited talk. |
|AFA06 |KOPČANSKÝ, Peter. Feronematics. In 18th Conference of Czech and Slovak Physicists, September 16-19, 2014, Olomouc, Czech |
| |Republic, invited lecture. |
|AFA07 |KOPČANSKÝ, Peter. Interaction of magnetic fluids with amyloid sstructures. In PLMMP 2014 : 6th International Conference |
| |Physics of Liquid Matter: Modern Problems, May 23th-27th, 2014, Kyiv, Ukraine, invited lecture. |
|AFA08 |KOPČANSKÝ, Peter. The effects of amyloid structure disaggregation in the presence of magnetic fluids and magnetic fields.|
| |In 43rd Winter School on Wave Acoustics and 10th Winter Workshop on Molecular Acoustics, Relaxation and Calorimetric |
| |Methods, 4.3. - 7.3. 2014, Szczyrk, Poland, invited talk. |
|AFA09 |KUDELA, Karel. Quasi-periodic variations of low energy cosmic rays. In STP 13 : 13th Solar terrestrial Physics symposium,|
| |October 12 - 18, 2014, Xian, China, invited talk. |
|AFA10 |KUDELA, Karel. On quasi-periodic variations of low energy cosmic rays observed near Earth. In ICHLNRRA 2014 : 8th |
| |International Conference on High Levels of Natural Radiation and Radon Areas, September 1 - 5, 2014, Prague, Czech |
| |Republic, invited talk. |
|AFA11 |SAMUELY, Peter. MoC ultrathin superconducting films on verge to the insulating state. In S-HY-NE-D 2014 : Physics and |
| |Applications of Superconducting Hybrid Nano-Engineered Devices, August 31 - September 4, 2014, Castellabate, Italy, |
| |invited lecture. |
|AFA12 |SZABÓ, Pavol. Superconductivity near the superconductor-insulator transition in MoC thin films Nanoscale |
| |superconductivity. In Advances in Nanostructures Superconductors: Materials, Properties and Theory, 4th to 7th May, 2014,|
| |Madrid, Spain, invited lecture. |
|AFA13 |ŠKORVÁNEK, Ivan - MARCIN, Jozef - CAPIK, Marek - JANIČKOVIČ, Dušan - ŠVEC, Peter. Amorphous and nanocrystalline bilayer |
| |ribbons with tailorable soft magnetic properties. In ICSM 2014 : 4th International Conference on Superconductivity and |
| |Magnetism, 27 April 2014 - 2 May 2014, Antalya, Turkey, invited talk. |
|AFA14 |ŠKORVÁNEK, Ivan - MARCIN, Jozef - CAPIK, Marek - VARGA, Marek - JANOTOVÁ, Irena - ŠVEC, Peter. Field-annealed amorphous |
| |and nanocrystalline bilayer ribbons with tailorable soft magnetic properties. In MAP6 : 6th International Workshop on |
| |Materials Analysis and Processing in Magnetic Fields, 8 - 11 July, 2014, Okinawa, Japan, invited lecture, p. 2-3. |
|AFA15 |ŠKORVÁNEK, Ivan - MARCIN, Jozef - VARGA, Marek - MAŤKO, Igor - ŠVEC, Peter. Rapidly Quenched Amorphous and |
| |Nanocrystalline Bilayer Ribbons for Energy and Sensor Applications. In EMN 2014 : 8th International conference on energy,|
| |materials and nanotechnology, 22 - 25 November 2014, Orlando, Florida, invited talk SS-06, p. 100. |
|AFA16 |ŠKORVÁNEK, Ivan. Field-annealed Soft Magnetic Amorphous and Nanocrystalline Ribbons with Improved Energy Performance. In |
| |CIMTEC 2014 : 6th Forum on New Materials, June 15-19, 2014, Montecatini Terme, Italy, invited lecture. |
|AFA17 |TIMKO, Milan. The hyperthermic effect in bacterial nanoparticles. In 43rd Winter School on Wave Acoustics and 10th Winter|
| |Workshop on Molecular Acoustics, Relaxation and Calorimetric Methods, 4.3. - 7.3. 2014, Szczyrk, Poland, invited talk. |
|AFA18 |TIMKO, Milan. Magnetosomes-preparation and properties. In Seminário do INCT/GFCx, University de Sao Paulo, 11.4. 2014, |
| |Sao Paulo, Brasil, invited talk. |
AFC Publikované príspevky na zahraničných vedeckých konferenciách
|AFC01 |NÉMETHOVÁ, Veronika - VNUKOVÁ, Dominika - BULIAKOVÁ, Barbora - GÁBELOVÁ, Alena - ZÁVIŠOVÁ, Vlasta - KONERACKÁ, Martina - |
| |ČIAMPOR, Fedor - LACÍK, Igor - RÁZGA, Filip. The impact of coating on size and colloidal stability of magnetite |
| |nanoparticles. In XXII International Conference on Bioencapsulation : 21st Bratislava International Conference on |
| |Macromolecules : Bratislava, Slovakia, September 17-19, 2014 : book of contributions. - Bioencapsulation Research Group, |
| |2014, p. 130-131. |
|AFC02 |NISHIYAMA, Kohei - MITO, T. - PRISTÁŠ, Gabriel - HARA, Yukiko - KOYAMA, T. - UEDA, Ko-ichi - KOHARA, Takao - AKAHAMA, |
| |Yuichi - GABÁNI, Slavomír - REIFFERS, Marián - FLACHBART, Karol - FUKAZAWA, Hideto - KOHORI, Yoh - TAKESHITA, Nao - |
| |SHITSEVALOVA, N.Yu. NMR Investigation of Pressure Effect on Intermediate Valence Compound SmB6. In JPS Conference |
| |Proceedings, 2014, vol. 3, art. no. 011085. |
|AFC03 |PRISTÁŠ, Gabriel - GABÁNI, Slavomír - FLACHBART, Karol - FILIPOV, V. - SHITSEVALOVA, N.Yu. Investigation of the Energy |
| |Gap in Sm1-xB6 and Sm1-xLaxB6 Kondo Insulators. In JPS Conference Proceedings, 2014, vol. 3, art. no. 012021. |
AFE Abstrakty pozvaných príspevkov zo zahraničných konferencií
|AFE01 |ŠVEC, Peter Jr. - ZIGO, Juraj - JANOTOVÁ, Irena - MAŤKO, Igor - JANIČKOVIČ, Dušan - KOVÁČ, Jozef - ŠKORVÁNEK, Ivan - |
| |ŠVEC, Peter. Preparation, stability and post-preparation processing of rapidly quenched monolayer, bilayer and trilayer |
| |ribbons : Abstract-5. In 15th International Conference on Rapidly Quenched and Metastable Materials (RQ15), August 24-28,|
| |2014, Shanghai, China : RQ15 Conference Proceedings, p. 58. |
AFG Abstrakty príspevkov zo zahraničných konferencií
|AFG01 |GÁBELOVÁ, Alena - MESÁROŠOVÁ, Monika - CHALUPA, Ivan - KOZICS, Katarína - BÁBELOVÁ, Andrea - BULIAKOVÁ, Barbora - ŠELC, |
| |Michal - URSÍNYOVÁ, M. - VÁVRA, Ivo - TIMKO, Milan - ČIAMPOR, Fedor - VNUKOVÁ, Dominika - RÁZGA, Filip. Nanočastice |
| |magnetitu - nano: bio interakcie in vitro. In Genetická toxikologie a prevence rakoviny : 37. Pracovní dny České a |
| |Slovenské společnosti pro mutagenezi zevním prostředím Československé biologické společnosti. - Brno, 2014, s. 59. ISBN |
| |978-80-7013-568-6. VEGA 2/0051/09, 2/0143/13 a 2/0163/12, APVV-0658-11, TRANSMED ITMS: 26240120008, TRANSMED 2 ITMS: |
| |26240120030, ITMS: 26240220071. |
|AFG02 |KOVAĽ, Vladimír - ŠKORVÁNEK, Ivan - MITOSERIU, L. - YAN, Haixue. A weak ferromagnetism in Tb-substituted BiFeO3 ceramics.|
| |In COST MP0904: Single- and multiphase ferroics and multiferroics with restricted geometries (SIMUFER) : Closing |
| |conference and final management committee meeting. Book of abstracts. Genoa, 30.1.-1.2.2014. - B.V., 2014. |
|AFG03 |RÁZGA, Filip - NÉMETHOVÁ, Veronika - BULIAKOVÁ, Barbora - GÁBELOVÁ, Alena - VNUKOVÁ, Dominika - ZÁVIŠOVÁ, Vlasta - |
| |KONERACKÁ, Martina - ČIAMPOR, Fedor - LACÍK, Igor. The size of colloidal stability of magnetite nanoparticles:An impact |
| |of surface coating. In Polymery 2014 : VIII. česko-slovenská konference : Třěšť, ČR, 6.- 9.10. 2014 : programová brožura |
| |konference. - Praha, ČR : Ústav makromolekulární chemie AV ČR, v.v.i., 2014, p. 59-60. ISBN 978-80-85009-81-1. |
|AFG04 |ŠVEC, Peter Jr. - TOPAL, U. - ŠKORVÁNEK, Ivan - BYDŽOVSKÝ, J. - JANIČKOVIČ, Dušan - ŠVEC, Peter. Rapidly quenched |
| |amorphous alloys for shielding and sensing applications. In ICSM 2014: 4th International Conference on Superconductivity |
| |and Magnetism, April 27-May 2, 2014, Antalya, Turkey : Abstract Book. - Antalya : Kervansaray Lara-Convention Center and |
| |SPA, 2014, p. 792. |
Nezaradené publikácie
|01 |KOPČANSKÝ, Peter. Anisotropic properties in liquid crystals containing magnetic nanoparticles. In Seminário do INCT/GFCx,|
| |University de Sao Paulo, 11.4. 2014, Sao Paulo, Brasil, invited talk. |
Ohlasy (citácie):
ABA Články (štúdie a state) v časopisoch a zborníkoch v rozsahu vedeckej monografie vydané v zahraničných vydavateľstvách
|ABA01 |ČENČARIKOVÁ, Hana - FARKAŠOVSKÝ, Pavol. Formation of charge and spin ordering in strongly correlated electron systems. In|
| |Condensed Matter Physics, 2011, vol. 14, no. 4, art. no. 42701. (0.800 - IF2010). (2011 - Current Contents, WOS, SCOPUS).|
| |ISSN 1607-324X. |
Citácie:
1. [1.1] HONG-SON NGUYEN - MINH-TIEN TRAN. Correlation-driven phase transition in a Chern insulator. In PHYSICAL REVIEW B. ISSN 1098-0121, 2013, vol. 88, no. 16, art. no. 165132., WOS
ADCA Vedecké práce v zahraničných karentovaných časopisoch impaktovaných
|ADCA01 |BÁGEĽOVÁ, Jaroslava - ANTALÍK, Marián - BONA, Martin. Studies on cytochrome c-heparin interactions by differential |
| |scanning calorimetry. In Biochemical Journal, 1994, vol. 297, part 1, p. 99-101. (3.659 - IF1993). (1994 - Current |
| |Contents, WOS, SCOPUS). ISSN 0264-6021. |
Citácie:
1. [1.1] GESSLBAUER, Bernd - THEUER, Martina - SCHWEIGER, Daniela - ADAGE, Tiziana - KUNGL, Andreas J. New targets for glycosaminoglycans and glycosaminoglycans as novel targets. In EXPERT REVIEW OF PROTEOMICS. ISSN 1478-9450, 2013, vol. 10, no. 1, pp. 77., WOS
|ADCA02 |CENIGA, Ladislav - DIKO, Pavel. Analytical model of oxygenation-induced stresses in YBCO superconductor. In Physica C. |
| |Superconductivity and its applicacions, 2007, vol. 467, no. 1-2, p. 179-185. (0.792 - IF2006). (2007 - Current Contents, |
| |WOS, SCOPUS). ISSN 0921-4534. |
Citácie:
1. [1.1] YANG, Yumei - WANG, Xingzhe. Stress and magnetostriction in an infinite hollow superconducting cylinder with a filling in its central hole. In PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS. ISSN 0921-4534, 2013, vol. 485, no., pp. 58., WOS
|ADCA03 |DIKO, Pavel. Microstructural limits of TSMG REBCO bulk superconductors. In Physica C. Superconductivity and its |
| |applicacions, 2006, vol. 445-448, p. 323-329. (0.948 - IF2005). (2006 - Current Contents, WOS, SCOPUS). ISSN 0921-4534. |
Citácie:
1. [1.1] BOLAT, S. - KUTUK, S. Fabrication of the New Y3Ba5Cu8O (y) Superconductor Using Melt-Powder-Melt-Growth Method and Comparison with YBa2Cu3O7-x. In JOURNAL OF SUPERCONDUCTIVITY AND NOVEL MAGNETISM. ISSN 1557-1939, 2012, vol. 25, no. 4, pp. 731., WOS
2. [1.1] SUHARTA, W. G. - SUASMORO, S. - PRATAPA, S. - DARMINTO - ISKANDAR, F. Structural and Superconducting Aspects in REBa2Cu3O7-delta (RE = Nd, Gd, Eu) Superconductors Prepared by Wet-mixing Method and Varying Sintering Temperature. In INTERNATIONAL CONFERENCE ON THEORETICAL AND APPLIED PHYSICS (ICTAP 2012). ISSN 0094-243X, 2013, vol. 1555, no., pp. 62., WOS
|ADCA04 |DIKO, Pavel. Cracking in melt-processed RE-Ba-Cu-O superconductors. In Superconductor Science and Technology, 1998, |
| |vol. 11, no. 1, p. 68-72. (2.183 - IF1997). (1998 - Current Contents, WOS, SCOPUS). ISSN 0953-2048. |
Citácie:
1. [1.1] HE, An - XUE, Cun - YONG, Huadong - ZHOU, Youhe. Fracture behaviors of thin superconducting films with field-dependent critical current density. In PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS. ISSN 0921-4534, 2013, vol. 492, no., pp. 25., WOS
|ADCA05 |DIKO, Pavel. Growth-related Microstructure of Melt-Grown REBa2Cu3Oy Bulk Superconductors. In Superconductor Science and |
| |Technology, 2000, vol. 13, no. 8, p. 1202-1213. (1.728 - IF1999). (2000 - Current Contents, WOS, SCOPUS). ISSN 0953-2048.|
Citácie:
1. [1.1] DOGRUER, M. - YILDIRIM, G. - OZTURK, O. - VARILCI, A. - SOYLU, N. - GORUR, O. - TERZIOGLU, C. Investigation of microstructural, Vickers microhardness and superconducting properties of YBa2Cu3-xGdxO7-delta (0 a parts per thousand currency sign x a parts per thousand currency sign 0.150) superconducting ceramics via experimental and theoretical approaches. In JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS. ISSN 0957-4522, 2013, vol. 24, no. 4, pp. 1264., WOS
2. [1.1] GORUR, O. - YILDIRIM, G. - ALTINTAS, S. P. - TERZIOGLU, C. Role of Gd content in Cu(1) and Cu(2) sites on electrical, microstructural, physical, mechanical and superconducting properties of YBa2Cu3-xGdxO7-delta ceramics. In JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS. ISSN 0957-4522, 2013, vol. 24, no. 6, pp. 1842., WOS
3. [1.1] LI, Guo-Zheng - LI, De-Jun - DENG, Jian-Hua - YANG, Wan-Min. Effects of liquid source mass and slow-cooling time on the infiltration growth of single-grain Y-Ba-Cu-O bulk superconductors. In JOURNAL OF ALLOYS AND COMPOUNDS. ISSN 0925-8388, 2013, vol. 551, no., pp. 318., WOS
4. [1.1] LI, Guo-Zheng - LI, De-Jun - DENG, Xiang-Yun - DENG, Jian-Hua - YANG, Wan-Min. Infiltration Growth and Crystallization Characterization of Single-Grain Y-Ba-Cu-O Bulk Superconductors. In CRYSTAL GROWTH & DESIGN. ISSN 1528-7483, 2013, vol. 13, no. 3, pp. 1246., WOS
5. [1.1] TURKOZ, M. B. - NEZIR, S. - TERZIOGLU, C. - VARILCI, A. - YILDIRIM, G. Investigation of Lu effect on YBa2Cu3O7-delta superconducting compounds. In JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS. ISSN 0957-4522, 2013, vol. 24, no. 3, pp. 896., WOS
6. [1.1] TURKOZ, M. B. - NEZIR, S. - VARILCI, A. - YILDIRIM, G. - AKDOGAN, M. - TERZIOGLU, C. Experimental and theoretical approaches on magnetoresistivity of Lu-Doped Y-123 superconducting ceramics. In JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS. ISSN 0957-4522, 2013, vol. 24, no. 5, pp. 1536., WOS
7. [1.1] ZHOU, Difan - HARA, Shogo - LI, Beizhan - XU, Kun - NOUDEM, Jacques - IZUMI, Mitsuru. Significant improvement of trapped flux in bulk Gd-Ba-Cu-O grains fabricated by a modified top-seeded melt growth process. In SUPERCONDUCTOR SCIENCE & TECHNOLOGY. ISSN 0953-2048, 2013, vol. 26, no. 1, pp., WOS
|ADCA06 |DIKO, Pavel. Cracking in melt-grown RE-Ba-Cu-O single-grain bulk superconductors. In Superconductor Science and |
| |Technology, 2004, vol. 17, no. 11, p. R45-R58. (2.247 - IF2003). (2004 - Current Contents, WOS, SCOPUS). ISSN 0953-2048. |
Citácie:
1. [1.1] HUANG, Chen-Guang - YONG, Hua-Dong - ZHOU, You-He. Critical state model for magneto-elastic problem of thin superconducting disks. In JOURNAL OF APPLIED PHYSICS. ISSN 0021-8979, 2013, vol. 114, no. 3, art. no. 033913., WOS
2. [1.1] KENFAUI, D. - CHAUD, X. - HAI, X. - LOURADOUR, E. - NOUDEM, J. G. Thin-Wall YBCO Single Domains Oxygenated Under Pressure: Optimization of Trapping Properties. In IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY. ISSN 1051-8223, 2013, vol. 23, no. 3, art. no. 7201005., WOS
3. [1.1] KENFAUI, Driss - SIBEUD, Pierre-Frederic - LOURADOUR, Eric - NOUDEM, Jacques G. - CHAUD, Xavier. High trapped field performances in thin-wall YBa2Cu3O7-delta bulk cryomagnets. In APPLIED PHYSICS LETTERS. ISSN 0003-6951, 2013, vol. 102, no. 20, art. no. 202602., WOS
4. [1.1] YANG, Xiaobin - GAN, Weimin. Effect of Thermal Dilation Stress and Flux Pinning Induced Stress on Superconductor/Tube System. In JOURNAL OF SUPERCONDUCTIVITY AND NOVEL MAGNETISM. ISSN 1557-1939, 2013, vol. 26, no. 10, pp. 3057., WOS
5. [1.1] ZHANG, Xingyi - HUANG, Yi - ZHOU, Jun - ZHOU, Youhe. Experimental and theoretical investigations on the singularity of the intensity factor of the current in high temperature superconductors. In SUPERCONDUCTOR SCIENCE & TECHNOLOGY. ISSN 0953-2048, 2013, vol. 26, no. 8, art. no. 085012., WOS
|ADCA07 |ČENČARIKOVÁ, Hana - FARKAŠOVSKÝ, Pavol. Phase transitions in the spinless Falicov-Kimball model with correlated hopping. |
| |In European Physical Journal B, 2010, vol. 77, no. 3, p. 393-399. (1.466 - IF2009). (2010 - Current Contents, WOS, |
| |SCOPUS). ISSN 1434-6028. |
Citácie:
1. [1.1] ZONDA, Martin. Phase transitions in the Falicov-Kimball model away from half-filling. In PHASE TRANSITIONS. ISSN 0141-1594, 2012, vol. 85, no. 1-2, pp. 96., WOS
|ADCA08 |ČENČARIKOVÁ, Hana - FARKAŠOVSKÝ, Pavol. Phase transitions in the two-dimensional Falicov-Kimball model on the triangular |
| |lattice. In Physica status solidi B. Basic solid state physics, 2007, vol. 244, no. 6, p. 1900-1907. (0.967 - IF2006). |
| |(2007 - Current Contents, WOS, SCOPUS). ISSN 0370-1972. |
Citácie:
1. [1.1] HONG-SON NGUYEN - MINH-TIEN TRAN. Correlation-driven phase transition in a Chern insulator. In PHYSICAL REVIEW B. ISSN 1098-0121, 2013, vol. 88, no. 16, art. no. 165132., WOS
|ADCA09 |FEDUNOVÁ, Diana - ANTALÍK, Marián. Prevention of thermal induced aggregation of cytochrome c at isoelectric pH values by |
| |polyanions. In Biotechnology and Bioengineering, 2006, vol. 93, no. 3, p. 485-493. (2.483 - IF2005). (2006 - Current |
| |Contents, WOS, SCOPUS). ISSN 0006-3592. |
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1. [1.1] FREIRE, Ernesto - SCHOEN, Arne - HUTCHINS, Burleigh M. - BROWN, Richard K. Chemical denaturation as a tool in the formulation optimization of biologics. In DRUG DISCOVERY TODAY. ISSN 1359-6446, 2013, vol. 18, no. 19-20, pp. 1007., WOS
2. [1.1] JEZEK, Jan - DARTON, Nicholas J. - DERHAM, Barry K. - ROYLE, Nikki - SIMPSON, Iain. Biopharmaceutical formulations for pre-filled delivery devices. In EXPERT OPINION ON DRUG DELIVERY. ISSN 1742-5247, 2013, vol. 10, no. 6, pp. 811., WOS
|ADCA10 |BÁGEĽOVÁ, Jaroslava - FEDUNOVÁ, Diana - GAŽOVÁ, Zuzana - FABIAN, M. - ANTALÍK, Marián. Influence of NaCl and sorbitol on |
| |the stability of conformations of cytochrome c. In Biophysical Chemistry, 2008, vol. 135, no. 1-3, p- 110-115. (1.913 - |
| |IF2007). (2008 - Current Contents, WOS, SCOPUS). ISSN 0301-4622. |
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1. [1.1] LONGO, Liam M. - LEE, Jihun - BLABER, Michael. Simplified protein design biased for prebiotic amino acids yields a foldable, halophilic protein. In PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2013, vol. 110, no. 6, p. 2135-2139., WOS
|ADCA11 |BUŠA, J. - HNATIČ, Michal - HONKONEN, Juha - HORVÁTH, Denis. Stability of Kolmogorov scaling in anisotropically forced |
| |turbulence. In Physical Review E. Statistical Physics, Plasmas, Fluids and Related Interdisciplinary Topics, 1997, vol. |
| |55, no. 1, p. 381-394. (2.149 - IF1996). (1997 - Current Contents, SCOPUS). ISSN 1063-651-X. |
Citácie:
1. [1.1] CHANG, Kelken - BEWLEY, Gregory P. - BODENSCHATZ, Eberhard. Experimental study of the influence of anisotropy on the inertial scales of turbulence. In JOURNAL OF FLUID MECHANICS. ISSN 0022-1120, 2012, vol. 692, no., pp. 464., WOS
2. [1.1] DUTTA, Kishore - NANDY, Malay K. Perturbative evaluation of universal numbers in homogeneous shear turbulence. In PHYSICAL REVIEW E. ISSN 1539-3755, 2013, vol. 87, no. 5, art. no. 053007., WOS
|ADCA12 |ANTONOV, N.V. - HNATIČ, Michal - HONKONEN, Juha - JURČIŠIN, Marián. Turbulence with pressure: Anomalous Scalling of |
| |Vector Field. In Physical Review E. Statistical Physics, Plasmas, Fluids and Related Interdisciplinary Topics, 2003, vol.|
| |68, no. 4, art. no. 046306. (2.397 - IF2002). (2003 - Current Contents, WOS, SCOPUS). ISSN 1063-651-X. |
Citácie:
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| |ISSN 1742-6588. |
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1. [1.1] QU, Timing - XUE, Yunran - FENG, Feng - HUANG, Rongxia - WU, Wei - SHI, Kai - HAN, Zhenghe. Study on the oxygenation process during the heat treatment of TFA-MOD YBCO thin films by in situ resistance measurement. In PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS. ISSN 0921-4534, 2013, vol. 494, no., pp. 148., WOS
|ADEB03 |KÚDELČÍK, J. - BURY, P. - KOPČANSKÝ, Peter - TIMKO, Milan. Dielectric breakdown in mineral oil ITO 100 based magnetic |
| |fluid. In Physics Procedia, 2010, vol. 9, p. 78-81. (2010 - WOS, SCOPUS). ISSN 1875-3892. |
Citácie:
1. [1.1] HAMDAN, Ahmad - AUDINOT, Jean-Nicolas - MIGOT-CHOUX, Sylvie - NOEL, Cedric - KOSIOR, Francis - HENRION, Gerard - BELMONTE, Thierry. Interaction of Discharges in Heptane with Silicon Covered by a Carpet of Carbon Nanotubes. In ADVANCED ENGINEERING MATERIALS. ISSN 1438-1656, 2013, vol. 15, no. 10, pp. 885., WOS
2. [1.1] LEE, W-H - LEE, J-C - UNAL, HI. Visualization on the behavior of nanoparticles in magnetic fluids under the electric field. In 13TH INTERNATIONAL CONFERENCE ON ELECTRORHEOLOGICAL FLUIDS AND MAGNETORHEOLOGICAL SUSPENSIONS (ERMR2012). ISSN 1742-6588, 2013, vol. 412, art. no. 012026., WOS
|ADEB04 |TABACHNIKOVA, E. D. - PODOLSKIY, A.V. - BENGUS, V.Z. - SMIRNOV, S.N. - CSACH, Kornel - MIŠKUF, Jozef - SAITOVA, L. - |
| |SEMENOVA, I.P. - VALIEV, R.Z. Microstructural Features of Failure Surfaces and Low Temperature Mechanical Properties of |
| |Ti-6Al-4V ELI Ultra-Fine Grained Alloy. In Strength of Materials : The International Journal, 2008, vol. 40, no. 1, p. |
| |71-74. (2008 - WOS, SCOPUS). ISSN 0039-2316. |
Citácie:
1. [1.2] GALÁN, J. J. - VERLEYSEN, Patricia - DEGRIECK, Joris A. Thermal effects during tensile deformation of Ti-6Al-4V at different strain rates. In Strain. ISSN 00392103, 2013-08-01, 49, 4, pp. 354-365., SCOPUS
|ADEB05 |MAŤAŠ, Slavomír - SIEMENSMEYER, K. - WHEELER, Elisa - WULF, E. - BEYER, R. - HERMANNSDÖRFER, Th. - IGNATCHIK, O. - |
| |UHLARZ, M. - FLACHBART, Karol - GABÁNI, Slavomír - PRIPUTEN, Pavol - EFDOKIMOVA, A. - SHITSEVALOVA, N.Yu. Magnetism of |
| |Rare Earth Tetraborides. In Journal of Physics: Conference Series, 2010, vol. 200, art. no. 032041. (2010 - WOS, SCOPUS).|
| |ISSN 1742-6588. |
Citácie:
1. [1.1] DUBLENYCH, Yu. I. Ground states of an Ising model on an extended Shastry-Sutherland lattice and the 1/2-magnetization plateau in some rare-earth-metal tetraborides. In PHYSICAL REVIEW E. ISSN 1539-3755, 2013, vol. 88, no. 2, art. no. 022111., WOS
2. [1.1] GRECHNEV, Alexei. Exact ground state of the Shastry-Sutherland lattice with classical Heisenberg spins. In PHYSICAL REVIEW B. ISSN 1098-0121, 2013, vol. 87, no. 14, art. no. 144419., WOS
3. [1.1] HUANG, W. C. - HUO, L. - FENG, J. J. - YAN, Z. B. - JIA, X. T. - GAO, X. S. - QIN, M. H. - LIU, J.M. Dynamic magnetization process in the frustrated Shastry-Sutherland system TmB4. In EPL. ISSN 0295-5075, 2013, vol. 102, no. 3, art. no. 37005., WOS
4. [1.1] KIM, M. S. - ARONSON, M. C. Spin Liquids and Antiferromagnetic Order in the Shastry-Sutherland-Lattice Compound Yb2Pt2Pb. In PHYSICAL REVIEW LETTERS. ISSN 0031-9007, 2013, vol. 110, no. 1, art. no. 017201., WOS
5. [1.1] MASKOVA, S. - HAVELA, L. - DANIS, S. - LLOBET, A. - NAKOTTE, H. - KOTHAPALLI, K. - CERNY, R. - KOLOMIETS, A. Impact of hydrogen absorption on crystal structure and magnetic properties of geometrically frustrated Nd2Ni2In. In JOURNAL OF ALLOYS AND COMPOUNDS. ISSN 0925-8388, 2013, vol. 566, no., pp. 22., WOS
6. [1.1] MASKOVA, S. - KOLOMIETS, A. - HAVELA, L. - ANDREEV, A. V. - SVOBODA, P. - NAKOTTE, H. - CERNY, R. Hydrogen absorption in RE2T2In compounds. In JOURNAL OF ALLOYS AND COMPOUNDS. ISSN 0925-8388, 2013, vol. 580, no., pp. S105., WOS
7. [1.1] WIERSCHEM, Keola - SENGUPTA, Pinaki. Columnar Antiferromagnetic Order and Spin Supersolid Phase on the Extended Shastry-Sutherland Lattice. In PHYSICAL REVIEW LETTERS. ISSN 0031-9007, 2013, vol. 110, no. 20, art. no. 207207., WOS
|ADEB06 |JURÍKOVÁ, Alena - CSACH, Kornel - KONERACKÁ, Martina - ZÁVIŠOVÁ, Vlasta - MÚČKOVÁ, Marta - TOMAŠOVIČOVÁ, Natália - LANCZ,|
| |Gábor - KOPČANSKÝ, Peter - TIMKO, Milan - MIŠKUF, Jozef. Magnetic Polymer Nanospheres for Anticancer Drug Targeting. In |
| |Journal of Physics: Conference Series, 2010, vol. 200, art. no. 122004. (2010 - WOS, SCOPUS). ISSN 1742-6588. |
Citácie:
1. [1.1] ARAVIND, Athulya - NAIR, Remya - RAVEENDRAN, Sreejith - VEERANARAYANAN, Srivani - NAGAOKA, Yutaka - FUKUDA, Takahiro - HASUMURA, Takahashi - MORIMOTO, Hisao - YOSHIDA, Yasuhiko - MAEKAWA, Toru - KUMAR, D. Sakthi. Aptamer conjugated paclitaxel and magnetic fluid loaded fluorescently tagged PLGA nanoparticles for targeted cancer therapy. In JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS. ISSN 0304-8853, 2013, vol. 344, no., pp. 116., WOS
|ADEB07 |KOPČANSKÝ, Peter - TOMAŠOVIČOVÁ, Natália - TIMKO, Milan - KONERACKÁ, Martina - ZÁVIŠOVÁ, Vlasta - TOMČO, Ladislav - |
| |JADZYN, Jan. The sensitivity of ferronematics to external magnetic fields. In Journal of Physics: Conference Series, |
| |2010, vol. 200, art. no. 072055. (2010 - WOS, SCOPUS). ISSN 1742-6588. |
Citácie:
1. [1.1] PRODANOV, Maksym F. - POGORELOVA, Nataliya V. - KRYSHTAL, Alexander P. - KLYMCHENKO, Andrey S. - MELY, Yves - SEMYNOZHENKO, Vladimir P. - KRIVOSHEY, Alexander I. - REZNIKOV, Yurii A. - YARMOLENKO, Sergey N. - GOODBY, John W. - VASHCHENKO, Valerii V. Thermodynamically Stable Dispersions of Quantum Dots in a Nematic Liquid Crystal. In LANGMUIR. ISSN 0743-7463, 2013, vol. 29, no. 30, pp. 9301., WOS
|ADEB08 |ANTAL, Vitaliy - KAŇUCHOVÁ, Mária - ŠEFČÍKOVÁ, Martina - KOVÁČ, Jozef - DIKO, Pavel - EISTERER, M. - HÖRHAGER, N. - |
| |ZEHETMAYER, M. - WEBER, H.W. - CHAUD, Xavier. Influence of Al doping and oxygenation on the superconducting properties of|
| |TSMG YBCO bulks. In Journal of Physics: Conference Series, 2010, vol. 234, art. no. 012002. (2010 - WOS, SCOPUS). ISSN |
| |1742-6588. |
Citácie:
1. [1.1] QU, Timing - XUE, Yunran - FENG, Feng - HUANG, Rongxia - WU, Wei - SHI, Kai - HAN, Zhenghe. Study on the oxygenation process during the heat treatment of TFA-MOD YBCO thin films by in situ resistance measurement. In PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2013, vol. 494, p. 148-152., WOS
AFC Publikované príspevky na zahraničných vedeckých konferenciách
|AFC01 |VAVRA, Martin - HRABČÁK, Pavol - ZENTKOVÁ, Mária - MIHALIK, Marián - MIHÁLIK, Matúš - CSACH, Kornel. The Effect of |
| |Pressure on Magnetic Properties of KMnCr(CN)6. In EPJ Web of Conferences, 2013, vol. 40, art. no. 14001. (2013 - SCOPUS).|
| |ISSN 2100-014X. |
Citácie:
1. [1.1] KNOWLES, Elisabeth S. - LI, Carissa H. - DUMONT, Matthieu F. - PEPRAH, Marcus K. - ANDRUS, Matthew J. - TALHAM, Daniel R. - MEISEL, Mark W. Photoinduced perturbations of the magnetic superexchange in core@shell Prussian blue analogues. In POLYHEDRON. ISSN 0277-5387, 2013, vol. 66, no., pp. 153., WOS
BAB Odborné monografie vydané v domácich vydavateľstvách
|BAB01 |FERANEC, Ján - BUCHA, Tomáš - CSAPLÁR, Jozef - HEFTY, Ján - JURAŠEK, Marián - KAŇÁK, Ján - KUDELA, Karel - MACHKOVÁ, Naďa|
| |- SVIČEK, Michal - VOJTKO, Rastislav - SCHOLTZ, Peter - NOVÁKOVÁ, Martina - SZÖCSOVÁ, Ildikó - RAŠI, Rastislav - |
| |VLADOVIČ, Jozef - REICHWALDER, Peter - ZEMAN, Martin - FINĎO, Slavomír. Slovensko očami satelitov. Bratislava : Veda, |
| |2010. 263 s. Svet vedy, 14. ISBN 978-80-224-1105-9. |
Citácie:
1. [4] SVIČEK, M., BUCHOVÁ, K. Význam krajinných prvkov v súčasnosti a po reforme spoločnej poľnohospodárskej politiky EÚ. In Geografická revue, 2013, roč. 9, supplement, p. 301-315. ISSN 1336-7072.
GII Rôzne publikácie a dokumenty, ktoré nemožno zaradiť do žiadnej z predchádzajúcich kategórií
|GII01 |BARKA, Ivan - BETÁK, Juraj - BUCHA, Tomáš - CEBECAUER, Tomáš - FERANEC, Ján - HAGUE IGONDOVÁ, Miroslava - HEFTY, Ján - |
| |HERDA, Pavol - HLAVÁČ, T. - HUSÁRIK, Marek - JANÁK, Juraj - KAŇÁK, Ján - KUDELA, Karel - MIŠKOVÁ, Monika - NOVÁČEK, Jozef|
| |- NOVÁKOVÁ, Martina - SVIČEK, Michal - SVOREŇ, Ján - ŠÚRI, Marcel - TAKÁČ, Jozef. Meniace sa Slovensko očami satelitov |
| |[elektronický zdroj]. Editor Ján Feranec. Bratislava : Veda, 2012. DVD + 72 s. textová časť. Názov z DVD. Požaduje sa |
| |Adobe Flash Player. ISBN 978-80-224-1285-8. |
Citácie:
1. [6] KOPECKÁ, Monika. Satelity zamerané na Slovensko. In Učiteľské noviny : dvojtýždenník o školstve a vzdelávaní, 2013, roč. LX, č. 25, s. 24. ISSN 0139-5769.
2. [6] KOSTÚRIKOVÁ, A. Meniace sa Slovensko očami satelitov. Interaktívna DVD publikácia. In Enviromagazín, 2013, roč. 18, č. 5, s. 24-25.
Príloha D
Údaje o pedagogickej činnosti organizácie
Semestrálne prednášky:
Doc. RNDr. Karol Flachbart, DrSc.
Názov semestr. predmetu: Makroskopické kvantové javy II
Počet hodín za semester: 13
Názov katedry a vysokej školy: Univerzita Pavla Jozefa Šafárika v Košiciach, Ústav fyzikálnych vied
RNDr. Ivan Králik, CSc.
Názov semestr. predmetu: Programovanie a spracovanie dát v jadrovej fyzike I
Počet hodín za semester: 28
Názov katedry a vysokej školy: Univerzita Pavla Jozefa Šafárika v Košiciach, Ústav fyzikálnych vied
Prof. Ing. Karel Kudela, DrSc.
Názov semestr. predmetu: Úvod do fyziky plazmy
Počet hodín za semester: 26
Názov katedry a vysokej školy: Univerzita Pavla Jozefa Šafárika v Košiciach, Katedra jadrovej a subjadrovej fyziky
Prof. RNDr. Peter Samuely, DrSc.
Názov semestr. predmetu: Vybrané kapitoly fyziky kondenzovaných látok
Počet hodín za semester: 42
Názov katedry a vysokej školy: Prírodovedecká fakulta UPJŠ, Ústav fyzikálnych vied
Semestrálne cvičenia:
RNDr. Hana Čenčariková, PhD
Názov semestr. predmetu: Matematika I
Počet hodín za semester: 120
Názov katedry a vysokej školy: Technická univerzita v Košiciach, Katedra aplikovanej matematiky a informatiky SjF
RNDr. Zuzana Gažová, CSc.
Názov semestr. predmetu: Biochémia
Počet hodín za semester: 84
Názov katedry a vysokej školy: Univerzita Pavla Jozefa Šafárika v Košiciach, Ústav lekárskej a klinickej biochémie
RNDr. Zuzana Gažová, CSc.
Názov semestr. predmetu: Biochémia ústnej dutiny
Počet hodín za semester: 84
Názov katedry a vysokej školy: Univerzita Pavla Jozefa Šafárika v Košiciach, Ústav lekárskej a klinickej biochémie
Mgr. Pavol Szabó, CSc.
Názov semestr. predmetu: Spektroskopické metódy FTL
Počet hodín za semester: 8
Názov katedry a vysokej školy: Univerzita Pavla Jozefa Šafárika v Košiciach, ÚFV
Semináre:
RNDr. Mária Zentková, CSc.
Názov semestr. predmetu: Pastelkova fyzika
Počet hodín za semester: 12
Názov katedry a vysokej školy: Katolícka univerzita v Ružomberku, Katedra predškolskej a elementárnej pedagogiky
Terénne cvičenia:
Individuálne prednášky:
Ing. Pavel Diko, DrSc.
Názov semestr. predmetu: Supravodivé materiály
Počet hodín za semester: 2
Názov katedry a vysokej školy: Technická univerzita v Košiciach, Faculty of Electrical Engineering and Informatics
Príloha E
Medzinárodná mobilita organizácie
(A) Vyslanie vedeckých pracovníkov do zahraničia na základe dohôd:
|Krajina |D r u h d o h o d y |
| |MAD, KD, VTS |Medziústavná |Ostatné |
| |Meno pracovníka |Počet dní |Meno pracovníka |Počet dní |Meno pracovníka |Počet dní |
|Belgicko | | | | |Zuzana Medvecká |31 |
| | | | | |Zuzana Vargaeštoková|31 |
| | | | | |Vlasta Závišová |4 |
|Bielorusko | | | | |Peter Kopčanský |5 |
| | | | | |Matúš Molčan |5 |
| | | | | |Matúš Molčan |5 |
| | | | | |Milan Timko |5 |
|Brazília | | | | |Zuzana Gažová |12 |
| | | | | |Martina Koneracká |12 |
| | | | | |Peter Kopčanský |12 |
| | | | | |Milan Timko |12 |
|Česko |Jana Lazúrová |5 | | |Iryna Antal |2 |
| |Marián Mihalik |5 | | |Ján Baláž |1 |
| |Zuzana Molčanová |5 | | |Ivan Baťko |12 |
| |Martin Vavra |5 | | |Marianna Baťková |12 |
| |Mária Zentková |5 | | |Dušan Bruncko |4 |
| | | | | |Radoslav Bučík |2 |
| | | | | |Peter Keša |54 |
| | | | | |Eduard Kladiva |4 |
| | | | | |Peter Kopčanský |3 |
| | | | | |Karel Kudela |4 |
| | | | | |Jana Lazúrová |3 |
| | | | | |Jana Lazúrová |7 |
| | | | | |Marián Mihalik |6 |
| | | | | |Marián Mihalik |3 |
| | | | | |Ján Nemčík |6 |
| | | | | |Ján Nemčík |21 |
| | | | | |Ján Nemčík |6 |
| | | | | |Ján Nemčík |15 |
| | | | | |Ján Nemčík |14 |
| | | | | |Ján Nemčík |26 |
| | | | | |Peter Skyba |4 |
| | | | | |Vlasta Závišová |2 |
| | | | | |Mária Zentková |5 |
|Čile | | | | |Ján Nemčík |28 |
|Fínsko | | | | |Marcela Brasová |7 |
| | | | | |Michal Hnatič |11 |
| | | | | |Peter Kopčanský |14 |
| | | | | |Peter Kopčanský |8 |
| | | | | |Vladimír Lisý |14 |
| | | | | |Richard Pinčák |8 |
| | | | | |Michal Pudlák |8 |
| | | | | |Milan Timko |14 |
| | | | | |Milan Timko |8 |
| | | | | |Jana Tóthová |14 |
|Francúzsko | | | | |Pavol Bobík |6 |
| | | | | |Karol Flachbart |5 |
| | | | | |Veronika Hašková |18 |
| | | | | |Jozef Kačmarčík |61 |
| | | | | |Peter Kopčanský |6 |
| | | | | |Peter Kopčanský |10 |
| | | | | |Zuzana Medvecká |54 |
| | | | | |Lucia Melníková |18 |
| | | | | |Matúš Molčan |12 |
| | | | | |Blahoslav Pastirčák |8 |
| | | | | |Michal Rajňák |18 |
| | | | | |Peter Samuely |31 |
| | | | | |Pavol Stríženec |12 |
| | | | | |Pavol Szabó |21 |
| | | | | |Iveta Takáčová |59 |
| | | | | |Milan Timko |6 |
| | | | | |Milan Timko |10 |
| | | | | |Natália Tomašovičová|12 |
| | | | | |Jana Tóthová |10 |
|Holandsko | | | | |Mária Huráková |95 |
| | | | | |Karel Kudela |3 |
|Izrael | | | | |Jana Lazúrová |10 |
| | | | | |Marián Mihalik |10 |
| | | | | |Mária Zentková |10 |
|Japonsko | | | | |Gabriel Pristáš |30 |
|Maďarsko |Veronika Gdovinová |7 | | |Peter Kopčanský |4 |
| |Jozef Kováč |5 | | |Jozef Kováč |8 |
| |Zuzana Molčanová |4 | | |Zuzana Mitróová |5 |
| | | | | |Milan Timko |4 |
| | | | | |Natália Tomašovičová|3 |
| | | | | |Natália Tomašovičová|4 |
| | | | | |Natália Tomašovičová|2 |
|Nemecko | | | | |Richard Bílek |4 |
| | | | | |Peter Kopčanský |6 |
| | | | | |Ingrid Kuľková |5 |
| | | | | |Michal Rajňák |5 |
| | | | | |Miloslav Straka |4 |
| | | | | |Miloslav Straka |5 |
| | | | | |Pavol Stríženec |10 |
| | | | | |Milan Timko |6 |
| | | | | |Renáta Verbová |5 |
| | | | | |Peter Zalom |179 |
| | | | | |Peter Zalom |7 |
|Poľsko |Jozef Kováč |6 | | |Ivan Baťko |6 |
| |Jana Lazúrová |4 | | |Marianna Baťková |6 |
| |Marián Mihalik |4 | | |Veronika Gdovinová |12 |
| |Mária Zentková |4 | | |Peter Kopčanský |5 |
| | | | | |Karel Kudela |3 |
| | | | | |Marián Mihalik |8 |
| | | | | |Marián Mihalik |3 |
| | | | | |Zuzana Molčanová |8 |
| | | | | |Milan Timko |5 |
| | | | | |Zoltán Tomori |4 |
|Portugalsko | | | | |Marián Mihalik |5 |
| | | | | |Marián Reiffers |5 |
| | | | | |Martin Vavra |6 |
| | | | | |Mária Zentková |5 |
|Rakúsko | | | | |Karel Kudela |4 |
| | | | | |Karel Kudela |4 |
| | | | | |Gabriel Pristáš |19 |
|Rumunsko | | | | |Zuzana Bednáriková |4 |
| | | | | |Dušan Bruncko |7 |
| | | | | |Diana Fedunová |5 |
| | | | | |Zuzana Gažová |5 |
| | | | | |Peter Kopčanský |5 |
| | | | | |Peter Kopčanský |5 |
| | | | | |Milan Timko |5 |
| | | | | |Milan Timko |5 |
| | | | | |Jozef Urban |7 |
|Rusko | | | | |Zuzana Bednáriková |22 |
| | | | | |Karol Flachbart |5 |
| | | | | |Karol Flachbart |6 |
| | | | | |Slavomír Gabáni |31 |
| | | | | |Emil Gažo |5 |
| | | | | |Veronika Gdovinová |22 |
| | | | | |Mária Huráková |22 |
| | | | | |Marián Jurčišin |82 |
| | | | | |Marián Jurčišin |16 |
| | | | | |Eva Jurčišinová |82 |
| | | | | |Alena Juríková |10 |
| | | | | |Martina Koneracká |10 |
| | | | | |Peter Kopčanský |10 |
| | | | | |Peter Kopčanský |6 |
| | | | | |Matúš Molčan |89 |
| | | | | |Andrey Musatov |7 |
| | | | | |Ján Mušinský |34 |
| | | | | |Ján Mušinský |64 |
| | | | | |Blahoslav Pastirčák |90 |
| | | | | |Blahoslav Pastirčák |8 |
| | | | | |Richard Pinčák |90 |
| | | | | |Michal Pudlák |42 |
| | | | | |Michal Pudlák |24 |
| | | | | |Michal Rajňák |8 |
| | | | | |Michal Rajňák |90 |
| | | | | |Katarína Šipošová |89 |
| | | | | |Milan Timko |6 |
| | | | | |Milan Timko |10 |
| | | | | |Natália Tomašovičová|6 |
| | | | | |Natália Tomašovičová|8 |
| | | | | |Vlasta Závišová |10 |
|Slovinsko | | | | |Marián Mihalik |11 |
| | | | | |Mária Zentková |11 |
|Španielsko | | | | |Jozef Kováč |10 |
| | | | | |Jozef Marcin |10 |
| | | | | |Michal Pudlák |16 |
| | | | | |Pavol Szabó |13 |
| | | | | |Ivan Škorvánek |10 |
|Švajčiarsko | | | | |Dušan Bruncko |8 |
| | | | | |Dušan Bruncko |8 |
| | | | | |Marián Jurčišin |11 |
| | | | | |Peter Kaliňák |24 |
| | | | | |Peter Kaliňák |57 |
| | | | | |Eduard Kladiva |14 |
| | | | | |Ivan Králik |20 |
| | | | | |Ivan Králik |19 |
| | | | | |Ingrid Kuľková |17 |
| | | | | |Ingrid Kuľková |17 |
| | | | | |Ján Mušinský |33 |
| | | | | |Ján Mušinský |24 |
| | | | | |Richard Pinčák |11 |
| | | | | |Miloslav Straka |16 |
| | | | | |Miloslav Straka |19 |
| | | | | |Miloslav Straka |12 |
| | | | | |Miloslav Straka |16 |
| | | | | |Pavol Stríženec |23 |
| | | | | |Pavol Stríženec |182 |
| | | | | |Pavol Stríženec |25 |
| | | | | |Ladislav Šándor |11 |
| | | | | |Ladislav Šándor |20 |
| | | | | |Ladislav Šándor |22 |
| | | | | |Ladislav Šándor |7 |
| | | | | |Jozef Špalek |21 |
| | | | | |Jozef Špalek |21 |
| | | | | |Jozef Špalek |21 |
|Švédsko | | | | |Ján Baláž |3 |
| | | | | |Ján Baláž |4 |
|Taiwan | | | | |Katarína Šipošová |10 |
|Taliansko |Zuzana Bednáriková |6 | | |Ivan Čurlík |20 |
| |Erna Demjén |6 | | |Marián Reiffers |3 |
| |Zuzana Gažová |6 | | |Marián Reiffers |3 |
| | | | | |Marián Sedlák |6 |
|Ukrajina | | | | |Peter Kopčanský |3 |
| | | | | |Peter Kopčanský |3 |
| | | | | |Milan Timko |3 |
| | | | | |Milan Timko |3 |
|USA | | | | |Vladimír Komanický |12 |
| | | | | |Jozef Kováč |13 |
| | | | | |Jozef Marcin |13 |
| | | | | |Marián Mihalik |13 |
| | | | | |Ivan Škorvánek |13 |
| | | | | |Martin Vavra |13 |
|Veľká Británia | | | | |Matúš Mihálik |12 |
| | | | | |Martin Vavra |12 |
|Počet vyslaní spolu|15 |77 | | |198 |3367 |
(B) Prijatie vedeckých pracovníkov zo zahraničia na základe dohôd:
|Krajina |D r u h d o h o d y |
| |MAD, KD, VTS |Medziústavná |Ostatné |
| |Meno pracovníka |Počet dní |Meno pracovníka |Počet dní |Meno pracovníka |Počet dní |
|Argentína |Dr. Pablo |7 | | | | |
| |Pedrazzini, PhD. | | | | | |
|Francúzsko | | | | |Dr. Jacques Noudem |4 |
| | | | | |Dr. Xavier Chaude |4 |
|Japonsko | | | | |K.Kasuga |4 |
| | | | | |T.Hanai |4 |
|Maďarsko |Dr. László Almásy |7 | | | | |
| |Dr. László Kiss |6 | | | | |
| |Dr. Péter Salamon |11 | | | | |
| |Dr. Tibor Tóth |4 | | | | |
| |Katona | | | | | |
|Poľsko |mgr. inž. Marcin |3 | | | | |
| |Gajewski | | | | | |
| |prof.dr.hab. Tadeusz|3 | | | | |
| |Wasiutynski | | | | | |
| |Robert Pelka |3 | | | | |
|Portugalsko | | | | |Daniel Mota |4 |
| | | | | |prof. Abilio Almeida|4 |
| | | | | |prof. Agostinho |4 |
| | | | | |moreira | |
| | | | | |Rui Vilarinho |4 |
|Rumunsko | | | | |Dr. Diana Ionescu |5 |
| | | | | |Dr. Maria-Magdalena |5 |
| | | | | |Mocanu | |
|Rusko | | | | |prof. Mikhail |4 |
| | | | | |Skvortsov | |
|Taliansko |Dr. Eva Bystrenová, |7 | | | | |
| |PhD. | | | | | |
| |prof. Fabio |7 | | | | |
| |Biscarini | | | | | |
|Ukrajina |doc. dr. Valentyna |10 | | | | |
| |Sirenko | | | | | |
|Počet prijatí spolu|11 |68 | | |11 |46 |
(C) Účasť pracovníkov pracoviska na konferenciách v zahraničí (nezahrnutých v "A"):
|Krajina |Názov konferencie |Meno pracovníka |Počet dní |
|Argentína |ATOMS |Slavomír Gabáni |7 |
| | |Peter Samuely |7 |
| | |Pavol Szabó |8 |
| |LT27 |Marcel Človečko |8 |
| | |Slavomír Gabáni |8 |
| | |Peter Samuely |8 |
| | |Peter Skyba |8 |
| | |Pavol Szabó |7 |
| |ULT 2014 |Marcel Človečko |4 |
| | |Peter Skyba |4 |
|Austrália |IUPAB |Diana Fedunová |11 |
| | |Zuzana Gažová |11 |
| | |Andrej Musatov |11 |
| | |Katarína Šipošová |11 |
|Cyprus |ECIS 2014 |Marián Sedlák |9 |
|Česko |Conference of Czech and Slovak |Marcel Človečko |6 |
| |Physicists | | |
| | |Peter Kopčanský |4 |
| | |Ladislav Šándor |5 |
| | |Milan Timko |4 |
| | |František Vavrek |6 |
| |ICHLNRRA 2014 |Karel Kudela |3 |
| |PCFES 2014 |Jana Lazúrová |5 |
| | |Marián Mihalik |5 |
| | |Marián Reiffers |5 |
| |YUCOMAT 2014 |Renáta Verbová |6 |
|Čierna Hora |YUCOMAT 2014 |Samuel Piovarči |6 |
| | |Liudmila Vojtkova |6 |
| | |Daniela Volochová |6 |
| | |Katarína Zmorayová |6 |
|Čína |SCOSTEP |Karel Kudela |7 |
|Francúzsko |EHPRG 2014 |Marián Mihalik |5 |
| | |Matúš Mihálik |5 |
| |IUPAB |Zuzana Bednáriková |11 |
| |SCES14 |Hana Čenčariková |7 |
| | |Pavol Farkašovský |7 |
| | |Karol Flachbart |6 |
| | |Jana Lazúrová |7 |
| | |Marián Mihalik |7 |
| | |Matúš Mihálik |6 |
| | |Gabriel Pristáš |7 |
| |SIT 2014 |Peter Samuely |6 |
| | |Pavol Szabó |6 |
|Írsko |ILCC 2014 |Alena Juríková |7 |
| | |Peter Kopčanský |7 |
| | |Martina Kubovčíková |7 |
| | |Michal Rajňák |7 |
| | |Milan Timko |7 |
| | |Natália Tomašovičová |7 |
| | |Vlasta Závišová |7 |
|Izrael |JdA2014 |Marián Reiffers |9 |
|Japonsko |MAP6 |Ivan Škorvánek |8 |
|Lotyšsko |PAMIR 2014 |Peter Kopčanský |5 |
| | |Milan Timko |5 |
|Nemecko |ECRS 2014 |Karel Kudela |1 |
| |ICMC14 |Iryna Antal |7 |
| | |Zuzana Bednáriková |6 |
| | |Zuzana Gažová |6 |
| | |Alena Juríková |7 |
| | |Martina Koneracká |7 |
| | |Peter Kopčanský |6 |
| | |Martina Kubovčíková |7 |
| | |Lucia Melníková |7 |
| | |Zuzana Mitróová |7 |
| | |Matúš Molčan |7 |
| | |Milan Timko |6 |
| | |Natália Tomašovičová |7 |
| | |Vlasta Závišová |6 |
| |INTERMAG 2014 |Marián Mihalik |7 |
| | |Ivan Škorvánek |6 |
| | |Martin Vavra |7 |
| |QUARK MATTER 2014 |Peter Kaliňák |6 |
|Poľsko |43th Winter School |Peter Kopčanský |4 |
| | |Milan Timko |4 |
| |BDS 2014 |Michal Rajňák |6 |
| |PM14 |Kornel Csach |6 |
| | |Veronika Hašková |6 |
| | |Mária Huráková |6 |
| | |Alena Juríková |6 |
| | |Jozef Kačmarčík |6 |
| | |Peter Kopčanský |6 |
| | |Martina Kubovčíková |6 |
| | |Jozef Miškuf |6 |
| | |Zuzana Mitróová |13 |
| | |Matúš Molčan |6 |
| | |Milan Timko |6 |
| | |Ladislav Tomčo |6 |
|Rusko |INSTR14 |Pavol Stríženec |9 |
|Švajčiarsko |ISVHECRI 2014 |Blahoslav Pastirčák |7 |
|Taliansko |CIMTEC 2014 |Ivan Škorvánek |7 |
| |JEM-EUSO Meeting |Pavol Bobík |7 |
| |SHYNED |Peter Samuely |5 |
|Turecko |ICSM 2014 |Ivan Škorvánek |6 |
|USA |EMN 2014 |Ivan Škorvánek |8 |
| |ISBB 2014 |Karol Flachbart |7 |
| |MMM 2014 |Jozef Marcin |10 |
| | |Ivan Škorvánek |10 |
| |SPIE |Zoltán Tomori |13 |
| |TMS 2014 |Ivan Škorvánek |8 |
|Spolu |37 |98 |661 |
Vysvetlivky: MAD - medziakademické dohody, KD - kultúrne dohody, VTS - vedecko-technická spolupráca v rámci vládnych dohôd
Skratky použité v tabuľke C:
43th Winter School - 10th Workshop Molecular Acoustics, Relaxation and Calorimetric Methods
ATOMS - Advanced Topics in Magnetism and Superconductivity
BDS 2014 - 8th International Conference on Broadband Dielectric Spectroscopy and its Applications
CIMTEC 2014 - 13th International Conference on Modern Materials and Technologies
Conference of Czech and Slovak Physicists - 18th Conference of Czech and Slovak Physicists
ECIS 2014 - 28th Conference of the European Colloid ind Iterface Society
ECRS 2014 - 24th European Cosmic Ray Symposium
EHPRG 2014 - 52nd European High Pressure Research Group
EMN 2014 - EMN Fall Meeting - Energy Materials Nanotechnology
ICHLNRRA 2014 - 8th International Conference on High Levels of Natural Radiation and Radon Areas
ICMC14 - 10th International Conference on the Scientific and Clinical Applications of Magnetic Carriers
ICSM 2014 - IV. International Conference on Superconductivity and Magnetism
ILCC 2014 - 25th International Liquid Crystal Conference
INSTR14 - Instrumentation for Colliding Beam Physics
INTERMAG 2014 - International Magnetics Conference
ISBB 2014 - 18th International Symposium on Boron, Borides and Related Materials
ISVHECRI 2014 - International Symposium on Very High Energy Cosmic Ray Interactions
IUPAB - 18th International Union of Pure and Applied Biophysics
JdA2014 - 44th International Conference Journée des actinides
JEM-EUSO Meeting - 15th International Meeting of the JEM-EUSO collaboration
LT27 - 27th International conference on Low Temperature Physics
MAP6 - 6th International Workshop on Materials Analysis and Processing in Magnetic Fields
MMM 2014 - 59th Annual Conference on Magnetism and Magnetic Materials
PAMIR 2014 - Fundamental and Applied MHD Thermo acoustic and Space technologies
PCFES 2014 - 11th Prague Colloquium on f-Electron Systems
PM14 - European Conference Physics of Magnetism 2014
QUARK MATTER 2014 - XXIV International Conference on Ultrarelativistic Nucleus-Nucleus Collisions
SCES14 - International Conference Strongly Correlated Electron Systems
SCOSTEP - 13th Quadrennial Solar-Terrestrial Physics Symposium
SHYNED - Physics and Application of Superconducting Hybrid Nano-Engineered Devices
SIT 2014 - Strongly disordered superconductors and the superconductor-insulator transition
SPIE - NanoEngineering - optical trapping and micromanipulations
TMS 2014 - Annual Meeting of the Minerals, Metals and Materiále Society
ULT 2014 - International Conference on Ultralow Temperature
YUCOMAT 2014 - YUCOMAT 2014
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