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JOURNALS // Fizika Tverdogo Tela // Archive

Fizika Tverdogo Tela, 2021 Volume 63, Issue 12, Pages 2082–2095 (Mi ftt7918)

This article is cited in 1 paper

Continued publication of the materials of the seminar in FTT N 01/22
Magnetism

Magnetostructural features of phase transitions in the Mn$_{1-x}$Co$_{x}$NiGe system. Part 2. Analysis

V. I. Mitsiuka, G. S. Rimskiya, V. V. Koledovb, A. V. Mashirovb, V. I. Val'kovc, A. V. Golovchanc, O. E. Kovalevc

a Scientific-Practical Materials Research Centre of NAS of Belarus
b Kotel'nikov Institute of Radio Engineering and Electronics, Russian Academy of Sciences, Moscow
c O O Galkin Donetsk Institute for Physics and Engineering, National Academy of Sciences of Ukraine

Abstract: Within the framework of the model of interacting parameters of the magnetic and structural orders, taking into account the internal periodic magnetic field orthogonal to the exchange field, we analyzed the features of magnetostructural transitions in the Mn$_{1-x}$Co$_{x}$NiGe system. A qualitative description of changes in the nature of magnetic phase transitions from magnetostructural transitions of the 1st order paramagnetism-antiferromagnetism ($x$ = 0.05–0.1) to isostructural transitions of the 2nd order paramagnetism-ferromagnetism ($x$ = 0.15–0.8) with a change in the concentration of Co is presented. An explanation is given for the onset of irreversible magnetic-field-induced transitions at temperatures on the order of 5 K in strong magnetic fields, accompanied by a change in the saturation magnetization for samples $x$ = 0.15–0.8. The low-temperature inverse magnetocaloric effect at liquid helium temperatures is predicted for these samples.

Keywords: irreversible magnetostructural first-order phase transition, helimagnetism, direct and inverse magnetocaloric effects.

Received: 23.06.2021
Revised: 02.08.2021
Accepted: 11.08.2021

DOI: 10.21883/FTT.2021.12.51669.153-2



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