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Дата публикацииНазваниеАвторы
2011Critical Properties of the Half-filled Hubbard Model in Three DimensionsRohringer, G.; Toschi, A.; Katanin, A.; Held, K.
2022Crystal Structure and Concentration-Driven Phase Transitions in Lu(1−x)ScxFeO3 (0 ≤ x ≤ 1) Prepared by the Sol–Gel MethodPakalniškis, A.; Alikin, D. O.; Turygin, A. P.; Zhaludkevich, A. L.; Silibin, M. V.; Zhaludkevich, D. V.; Niaura, G.; Zarkov, A.; Skaudžius, R.; Karpinsky, D. V.; Kareiva, A.
2022A disorder-sensitive emergent vortex phase identified in high- T csuperconductor (Li,Fe)OHFeSeLi, D.; Shen, P.; Tian, J.; He, G.; Ni, S.; Wang, Z.; Xi, C.; Pi, L.; Zhang, H.; Yuan, J.; Jin, K.; Talantsev, E. F.; Yu, L.; Zhou, F.; Hänisch, J.; Dong, X.; Zhao, Z.
2018Electron States and Magnetic Phase Diagrams of Strongly Correlated SystemsIrkhin, V. Y.; Igoshev, P. A.
2022Electron-phonon coupling constant and BCS ratios in LaH10−y doped with magnetic rare-earth elementTalantsev, E. F.
2022Exotic Magnetic and Electronic Properties of Layered Formula Presented Single Crystals under High PressureGhosh, A.; Singh, D.; Aramaki, T.; Mu, Q.; Borisov, V.; Kvashnin, Y.; Haider, G.; Jonak, M.; Chareev, D.; Medvedev, S. A.; Klingeler, R.; Mito, M.; Abdul-Hafidh, E. H.; Vejpravova, J.; Kalbàč, M.; Ahuja, R.; Eriksson, O.; Abdel-Hafiez, M.
2022Importance of the many-body effects on the structural properties of the novel iron oxide Fe2OShorikov, A. O.; Streltsov, S. V.
2000Influence of Rare Regions on Quantum Phase Transition in Antiferromagnets with Hidden Degrees of FreedomSkryabin, Y. N.; Chukin, A. V.; Shchanov, A. V.
2023Magnetic phase diagram and possible Kitaev-like behavior of the honeycomb-lattice antimonate Na3Co2SbO6Vavilova, E.; Vasilchikova, T.; Vasiliev, A.; Mikhailova, D.; Nalbandyan, V.; Zvereva, E.; Streltsov, S. V.
1995Magnetic Phase Diagram of UNiGaSechovský, V.; Havela, L.; Svoboda, P.; Andreev, A. V.; Burlet, P.; Prokeš, K.; Nakotte, H.; de Boer, F. R.; Brück, E.; Robinson, R. A.; Maletta, H.
2018Magnetic phase transitions and unusual antiferromagnetic states in the Hubbard modelIgoshev, P. A.; Timirgazin, M. A.; Arzhnikov, A. K.; Irkhin, V. Y.
2021Magnetic, Charge, and Transport Properties of Graphene NanoflakesProtsenko, V. S.; Katanin, A. A.
2018Magnetization, resistivity, specific heat and ab initio calculations of Gd5Sb3Samatham, S. S.; Patel, A. K.; Lukoyanov, A. V.; Suresh, K. G.
1998Modeling Melting in Binary SystemsSon, L. D.; Rusakov, G. M.; Patashinski, A. Z.; Ratner, M. A.
2021Monte Carlo Simulation of a Model CupratePanov, Yu. D.; Moskvin, A. S.; Chikov, A. A.; Ulitko, V. A.
2018Morphological Phase Diagram of Gadolinium Iodide Encapsulated in Carbon NanotubesBatra, N. M.; Ashokkumar, A. E.; Smajic, J.; Enyashin, A. N.; Deepak, F. L.; Costa, P. M. F. J.
2020Nanoscale Ferroelectricity in Pseudo-cubic Sol-gel Derived Barium Titanate - bismuth Ferrite (BaTiO3– BiFeO3) Solid SolutionsPakalniškis, A.; Lukowiak, A.; Niaura, G.; Głuchowski, P.; Karpinsky, D. V.; Alikin, D. O.; Abramov, A. S.; Zhaludkevich, A.; Silibin, M.; Kholkin, A. L.; Skaudžius, R.; Strek, W.; Kareiva, A.
2013New method of active electromagnetic induction and seismic monitoring in oilsaturated mediaHachay, O. A.; Khachay, O. Y.; Khachay, A. Y.
2021Peculiarities of the Phase Transformation Dynamics in Bulk FeRh Based Alloys from Magnetic and Structural MeasurementsZverev, V. I.; Gimaev, R. R.; Miyanaga, T.; Vaulin, A. A.; Gubkin, A. F.; Kovalev, B. B.; dos Santos, A. M.; Lovell, E.; Cohen, L. F.; Zarkevich, N. A.
2013Perspectives of disproportionation driven superconductivity in strongly correlated 3d compoundsMoskvin, A. S.