Образец цитирования:
Н. В. Мушников, “Магнитные материалы на основе интерметаллических соединений”, УФН, 182:4 (2012), 450–455; Phys. Usp., 55:4 (2012), 421–425
Hongjian Ye, Jiang Wang, Qing Chen, Guanghui Rao, Huaiying Zhou, “Development of thermodynamic database of the Mn‐RE (RE = rare earth metals) binary systems”, Materials Genome Engineering Advances, 2:2 (2024)
Monir Mohammed El Amine, Baltach H., Mouchaal Y., Murtaza G., “The Effects of Ru and Rh Substitutions on the Magneto-Electronic and Optical Properties of the Tbni5 Intermetallic Compound: An Ab Initio Investigation”, J. Supercond. Nov. Magn, 31:2 (2018), 547–559
Val'kov V.I., Gribanov I.F., Todris B.M., Golovchan A.V., Mitsiuk V.I., “Features of Formation of the Magnetocaloric Phenomena in Mn1-T Ti (T) as and Mn1-X Cr (X) Nige Systems”, Phys. Solid State, 60:6 (2018), 1125–1133
Knyazev Yu.V., Lukoyanov A.V., Kuz'min Yu.I., Kuchin A.G., “A Role of the 3D Electron Subsystem in the Evolution of Band Structure and Magnetic and Optical Properties of Erni5-Xcox Compounds (X=0-4)”, Phys. Solid State, 60:12 (2018), 2363–2369
V. I. Val'kov, V. I. Kamenev, V. I. Mityuk, I. F. Gribanov, A. V. Golovchan, T. Yu. Delikatnaya, “Structural features of the ferromagnetic order formation in the Mn1–x Cr x NiGe system”, Phys. Solid State, 59:2 (2017), 274–282
Maurya D.K., Saini S.M., “Effect of Si substitution on structural, electronic and optical properties of YNi4Si-type DyNi5−xSix (x=0,1,2) compounds”, J. Magn. Magn. Mater., 416 (2016), 89–97
Monir Mohammed El Amine, Baltache H., Khenata R., Murtaza G., Mahmood A., “Structural, Magnetic, and Optoelectronic Properties of TbNi5, TbNi3Ti2 and TbNi3V2 Compounds”, J. Supercond. Nov. Magn, 29:5 (2016), 1255–1266
N.V. Mushnikov, A.G. Kuchin, E.G. Gerasimov, P.B. Terentev, V.S. Gaviko, “Magnetic phase transitions in Y1−xTbxMn6Sn6, La1−xSmxMn2Si2, Lu2(Fe1−хMnx)17, and La(Fe0.88SixAl0.12−x)13 intermetallic compounds”, Journal of Magnetism and Magnetic Materials, 2015
A. V. Lukoyanov, Yu. V. Knyazev, “Calculation of the electronic structure of the intermetallic compounds ErNi5 − x Al x (x = 0, 1, 2)”, Phys. Solid State, 57:1 (2015), 1
V. I. Grebennikov, T. V. Kuznetsova, A. G. Kuchin, “Resonant photoemission spectroscopy study of the d and f states in GdNi5 − x Cu x intermetallics”, Bull. Russ. Acad. Sci. Phys, 79:1 (2015), 134
Yu. V. Knyazev, A. V. Lukoyanov, Yu. I. Kuz’min, A. Haldar, K. G. Suresh, “Role of Fe and Co in optical conductivity and electronic structure of TbNi4Fe and TbNi4Co”, Opt. Spectrosc, 117:3 (2014), 414
В. Н. Самофалов, Д. П. Белозоров, А. Г. Равлик, “Сильные поля рассеяния в системах магнитов с гигантской магнитной анизотропией”, УФН, 183:3 (2013), 287–306; V. N. Samofalov, D. P. Belozorov, A. G. Ravlik, “Strong stray fields in systems of giant magnetic anisotropy magnets”, Phys. Usp., 56:3 (2013), 269–288
Yu. V. Knyazev, A. V. Lukoyanov, Yu. I. Kuz’min, A. G. Kuchin, “Specific features of the electronic structure and spectral properties of NdNi5 − x Cu x compounds”, Phys. Solid State, 55:11 (2013), 2191