The effects of pressure and a partial substitution of Fe by Mn on the intrinsic magnetic proper-ties (saturation magnetization Ms, anisotropy K-1, spin reorientation transition TSR and Curie point Tc) of Fe3Ge single crystal (DO19 hexagonal phase) were investigated. The magnetocrystalline anisotropy of the compound is planar at low temperature and, through a second order spin reorientation transition, it becomes axial above T-SR=373 K. The Mn substitution for Fe widely extends the region of axial anisotropy, shifting TSR down to 126 K in (Fe0.8Mn0.2)(3.25)Ge. However Ms and TC are markedly reduced. In both compounds, high pressure has a little influence on the 3d moment, while it reduces the planar character of the anisotropy.

Effect of pressure and Mn substitution for Fe on magnetization, magnetocrystalline anisotropy and spin-reorientation transition of Fe3Ge single crystal

Albertini F;Pareti L;Watts;
2001

Abstract

The effects of pressure and a partial substitution of Fe by Mn on the intrinsic magnetic proper-ties (saturation magnetization Ms, anisotropy K-1, spin reorientation transition TSR and Curie point Tc) of Fe3Ge single crystal (DO19 hexagonal phase) were investigated. The magnetocrystalline anisotropy of the compound is planar at low temperature and, through a second order spin reorientation transition, it becomes axial above T-SR=373 K. The Mn substitution for Fe widely extends the region of axial anisotropy, shifting TSR down to 126 K in (Fe0.8Mn0.2)(3.25)Ge. However Ms and TC are markedly reduced. In both compounds, high pressure has a little influence on the 3d moment, while it reduces the planar character of the anisotropy.
2001
Istituto dei Materiali per l'Elettronica ed il Magnetismo - IMEM
0-87849-880-X
Fe3Ge magnetocrystalline anisotropy
pressure effect
single crystal
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/126092
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