Abstract:
Experimental studies of the magnetic and structural properties of solid solutions of the Mn1−xCoxNiGe system in a wide range of Co concentrations (0.05 ⩽x⩽ 0.8), temperatures (5 K ⩽x⩽ 600 K) and magnetic fields (0.016 T ⩽x⩽ 13.5 T) have revealed a number of nontrivial magnetic and magnetocaloric features of this system. The latter include: 1) a change in the nature of magnetic phase transitions from magnetostructural transitions of the 1st order paramagnetism-antiferromagnetism (0.05 ⩽x⩽ 0.15) to isostructural transitions of the 2nd order paramagnetism-ferromagnetism (0.15 ⩽x⩽ 0.8) with a change in the concentration of Co; 2) anomalous behavior of low-temperature regions of magnetization in weak magnetic fields; 3) a change in the saturation magnetization and the appearance of irreversible magnetic field-induced transitions at helium temperatures in strong magnetic fields.
Keywords:
irreversible magnetostructural first-order phase transition, helimagnetism, direct and inverse magnetocaloric effects.
Citation:
V. I. Mitsiuk, G. S. Rimskiy, K. I. Yanushkevich, V. V. Koledov, A. V. Mashirov, V. I. Val'kov, A. V. Golovchan, O. E. Kovalev, “Magnetostructural features of phase transitions in the Mn1−xCoxNiGe system. Part 1. Experimental results”, Fizika Tverdogo Tela, 63:12 (2021), 2073–2081