A study of temperature and composition dependence of the magnetic anisotropy in the tetragonal (HoxEr1−x)Fe10V2 polycrystalline compounds was made by means of the singular point detection technique. At 293 K the easy magnetization direction lies along the tetragonal c axis [001] in all the samples and the anisotropy field increases linearly with increasing Ho content. However, with decreasing temperature the competition among the anisotropy of the different magnetic sublattices gives rise to a spin reorientation transition axis to cone in Er containing samples. The TSR value increases with increasing Er content. A significant in‐plane anisotropy was found in all the compounds. This planar anisotropy is larger in HoFe10V2, where it favors the [100] direction of the basal plane, while in ErFe10V2 the [110] is the preferred direction. The difference between the anisotropy field along [100] and [110] directions was found to decrease with increasing Er content. A first‐order magnetization process of type 1 was observed below 120 K in all the compounds when the magnetic field is applied along the [100] direction.

Competing Anisotropies and Magnetization Processes in the Pseudoternary (HoxEr1-x)Fe10V2 Tetragonal System / P. A., Algarabel; L., Pareti; C., Marquina; Solzi, Massimo; M. R., Ibarra; G., Marusi. - In: JOURNAL OF APPLIED PHYSICS. - ISSN 1089-7550. - 71:(1992), pp. 366-369. [10.1063/1.350717]

Competing Anisotropies and Magnetization Processes in the Pseudoternary (HoxEr1-x)Fe10V2 Tetragonal System

SOLZI, Massimo;
1992-01-01

Abstract

A study of temperature and composition dependence of the magnetic anisotropy in the tetragonal (HoxEr1−x)Fe10V2 polycrystalline compounds was made by means of the singular point detection technique. At 293 K the easy magnetization direction lies along the tetragonal c axis [001] in all the samples and the anisotropy field increases linearly with increasing Ho content. However, with decreasing temperature the competition among the anisotropy of the different magnetic sublattices gives rise to a spin reorientation transition axis to cone in Er containing samples. The TSR value increases with increasing Er content. A significant in‐plane anisotropy was found in all the compounds. This planar anisotropy is larger in HoFe10V2, where it favors the [100] direction of the basal plane, while in ErFe10V2 the [110] is the preferred direction. The difference between the anisotropy field along [100] and [110] directions was found to decrease with increasing Er content. A first‐order magnetization process of type 1 was observed below 120 K in all the compounds when the magnetic field is applied along the [100] direction.
1992
Competing Anisotropies and Magnetization Processes in the Pseudoternary (HoxEr1-x)Fe10V2 Tetragonal System / P. A., Algarabel; L., Pareti; C., Marquina; Solzi, Massimo; M. R., Ibarra; G., Marusi. - In: JOURNAL OF APPLIED PHYSICS. - ISSN 1089-7550. - 71:(1992), pp. 366-369. [10.1063/1.350717]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/2425400
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