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Field and temperature dependence of magnetization in FeCu-based amorphous alloys

机译:FeCu基非晶合金中磁化强度的场和温度关系

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摘要

In this paper, the production of FeCu-based FeCuZr amorphous alloys by ball milling is reported. The thermal dependence of magnetization for the [Fe_(0.5)Cu_(0.5)]_85Zr_(15) (at. %) amorphous alloy has been found to show a dramatic field dependence of the kink point of the magnetization. This kink corresponds to a temperature different from the Curie temperature, above 400 K, of the ferromagnetic phase, which, according to spin waves fitting, can be induced by applying external fields. Just above 235 K, the thermoremanence increases sharply, and this feature strongly suggests an increase of the ferromagnetic ordering under zero field heating. Neutron diffraction experiments seem to confirm the enhancement of spin alignment. The thermal expansion above the compensation temperature is proposed to be the origin of the thermoremanence enhancement through the anti-Invar effect as might be explained within the framework of recent ab initio calculations [M. van Schilfgaarde et al., Nature (London) 400, 46 (1999)].
机译:本文报道了通过球磨生产FeCu基FeCuZr非晶态合金。已经发现[Fe_(0.5)Cu_(0.5)] _ 85Zr_(15)(at。%)非晶态合金的磁化强度的热依赖性显示出磁化扭结点的显着场依赖性。该扭结对应于不同于铁磁相的居里温度(高于400 K)的温度,根据自旋波拟合,可以通过施加外部磁场来感应该温度。刚好在235 K以上时,热剩磁急剧增加,并且该特征强烈暗示在零磁场加热下铁磁有序的增加。中子衍射实验似乎证实了自旋排列的增强。有人提出,通过补偿补偿温度以上的热膨胀是通过抗因瓦合金效应提高热剩磁的原因,这可以在最近的从头算计算的框架中得到解释。 van Schilfgaarde et al。,Nature(London)400,46(1999)]。

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