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Отображение результатов 18 до 37 из 49 < назад   дальше >
Дата публикацииНазваниеАвторы
2021Magnetic and electronic ordering phenomena in the Ru2 O6 -layer honeycomb lattice compound AgRuO3Schnelle, W.; Prasad, B. E.; Felser, C.; Jansen, M.; Komleva, E. V.; Streltsov, S. V.; Mazin, I. I.; Khalyavin, D.; Manuel, P.; Pal, S.; Muthu, D. V. S.; Sood, A. K.; Klyushina, E. S.; Lake, B.; Orain, J. -C.; Luetkens, H.
2020Magnetic Fluctuations and Superconducting Pairing in ϵ -ironBelozerov, A. S.; Katanin, A. A.; Irkhin, V. Yu.; Anisimov, V. I.
2018Magnetic phase transitions and unusual antiferromagnetic states in the Hubbard modelIgoshev, P. A.; Timirgazin, M. A.; Arzhnikov, A. K.; Irkhin, V. Y.
2022Magnetic Properties of A2Ni2TeO6 (A = K, Li): Zigzag Order in the Honeycomb Layers of Ni2+ Ions Induced by First and Third Nearest-Neighbor Spin ExchangesVasilchikova, T.; Vasiliev, A.; Evstigneeva, M.; Nalbandyan, V.; Lee, J. -S.; Koo, H. -J.; Whangbo, M. -H.
2015Magnetism in RRhGe (R = Tb, Dy, Er, Tm): An experimental and theoretical studyGupta, S.; Suresh, K. G.; Nigam, A. K.; Lukoyanov, A. V.
2018Magnetization, resistivity, specific heat and ab initio calculations of Gd5Sb3Samatham, S. S.; Patel, A. K.; Lukoyanov, A. V.; Suresh, K. G.
2021Metal-Insulator Transition and Antiferromagnetism in the Generalized Hubbard Model: Treatment of Correlation EffectsIgoshev, P. A.; Irkhin, V. Y.
2019Metal-insulator transition in the antiferromagnetic state of the Hubbard model: Analytical theoryIgoshev, P. A.; Irkhin, V. Y.
2021Mixed Spin S = 1 and S = 12 Layered Lattice in Cu2 F5Korotin, D. M.; Novoselov, D. Y.; Anisimov, V. I.; Oganov, A. R.
2018Nuclear resonance reflectivity from a [57Fe/Cr]30 multilayer with the Synchrotron Mössbauer SourceAndreeva, M. A.; Baulin, R. A.; Chumakov, A. I.; Rüffer, R.; Smirnov, G. V.; Babanov, Y. A.; Devyaterikov, D. I.; Milyaev, M. A.; Ponomarev, D. A.; Romashev, L. N.; Ustinov, V. V.
2019Observation of orbital ordering and origin of the nematic order in FeSeCao, R. X.; Hu, J.; Dong, J.; Zhang, J. B.; Ye, X. S.; Xu, Y. F.; Chareev, D. A.; Vasiliev, A. N.; Wu, B.; Zeng, X. H.; Wang, Q. L.; Wu, G.
2020Optical, Magnetic and Magneto-Transport Properties of Nd 1-xAxMn0.5Fe0.5O3-δ (A=Ca, Sr, Ba; x=0, 0.25)Hossain, A.; Gilev, A. R.; Yanda, P.; Cherepanov, V. A.; Volegov, A. S.; Sakthipandi, K.; Sundaresan, A.
2016Orbitally induced hierarchy of exchange interactions in the zigzag antiferromagnetic state of honeycomb silver delafossite Ag3Co2SbO6Zvereva, E. A.; Stratan, M. I.; Ushakov, A. V.; Nalbandyan, V. B.; Shukaev, I. L.; Silhanek, A. V.; Abdel-Hafiez, M.; Streltsov, S. V.; Vasiliev, A. N.
2020Orbitally-resolved ferromagnetism of monolayer CrI3Kashin, I. V.; Mazurenko, V. V.; Katsnelson, M. I.; Rudenko, A. N.
2019Origin of up-up-down-down magnetic order in Cu2GeO4Badrtdinov, D. I.; Mazurenko, V. V.; Tsirlin, A. A.
2019Phase diagrams of a 2D Ising spin-pseudospin modelPanov, Y. D.; Ulitko, V. A.; Budrin, K. S.; Chikov, A. A.; Moskvin, A. S.
2012Pressure Induced AF - F - AF Magnetic Phase Transformations in Pd substituted FeRh compoundChirkova, A. M.; Volegov, A. S.; Neznakhin, D. S.; Stepanova, E. A.; Baranov, N. V.
2023Quantifying interaction mechanism in infinite layer nickelate superconductorsTalantsev, E. F.
2005Real-space renormalization group study of the anisotropic antiferromagnetic Heisenberg model of spin S = 1 on a honeycomb latticeBoyarchenkov, A. S.; Ovchinnikov, A. S.; Bostrem, I. G.; Baranov, N. V.; Hosokoshi, Y.; Inoue, K.
2020Realizing Square and Diamond Lattice S=1/2 Heisenberg Antiferromagnet Models in the α and β Phases of the Coordination Framework, KTi(C2 O4)2·x H2OAbdeldaim, A. H.; Li, T.; Farrar, L.; Tsirlin, A. A.; Yao, W.; Gibbs, A. S.; Manuel, P.; Lightfoot, P.; Nilsen, Gø. J.; Clark, L.