Magnetic properties of HoFe₆Al₆ with a compensation point near absolute zero: A theoretical and experimental study


Magnetic properties of HoFe₆Al₆ with a compensation point near absolute zero: A theoretical and experimental study

Sabdenov, C. K.; Davydova, M. D.; Zvezdin, K. A.; Zvezdin, A. K.; Andreev, A. V.; Gorbunov, D. I.; Tereshina, E. A.; Skourski, Y.; Sebek, J.; Tereshina, I. S.

Ferrimagnet HoFe6Al6 (tetragonal ThMn12-type crystal structure) has a compensation point for the Ho and Fe magnetic sublattices at a temperature close to absolute zero. The experimental study was carried out in fields up to 60 T. H-T phase diagrams and a full magnetization process along the principal crystallographic directions of a single-crystalline sample are obtained theoretically by using a model of a f-d ferrimagnet with two anisotropic sublattices, coupled by weak exchange interaction. The two first-order phase transitions, found experimentally along the [110] and [100] axes, were explained theoretically. The transition along the [110] direction occurs between noncollinear and collinear phases, it starts at the compensation point and ends at a tricritical point around 60 T. The transition along the [100] direction goes also from the point of compensation to the point of the liquid-vapor type at 40 T. This transition was shown to occur between two distinct noncollinear phases. The crucial role of the strong rare-earth anisotropy for the positions of the obtained critical points was revealed.

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Publ.-Id: 25374