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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Distinct magnetic states of metastable fee structured Fe and Fe-Cu alloys studied by ab initio calculations
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Distinct magnetic states of metastable fee structured Fe and Fe-Cu alloys studied by ab initio calculations

机译:从头算计算研究亚稳态费结构铁和铁铜合金的不同磁态

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摘要

Based on the projector augmented wave method within the generalized gradient approximation, ab initio calculations predict five distinct magnetic states of Fe in fee structure depending sensitively on their atomic volumes, i.e., with increasing the atomic volume, there appears firstly a complicated coexistence of a non-magnetic, two antiferromagnetic, and a low spin ferromagnetic states, and then a high spin ferromagnetic state. Moreover, the present calculations also predict that the high spin ferromagnetic state of Fe atoms could be stabilized in some non-equilibrium Fe-Cu alloys over a relatively broad composition range, suggesting a possible approach to synthesize new Fe-containing alloys of high performance in magnetization. An intensive discussion is accompanied to compare the predictions with those from experiments as well as from those calculated results reported previously. It turns out that the present calculations could give reasonable interpretation to the richness and/or the complexity of the magnetic behaviors of fee Fe and the Fe-Cu alloys.
机译:从广义梯度近似内的投影仪增强波方法出发,从头算计算可以根据电荷的原子量灵敏地预测费结构中Fe的五个不同磁态,即,随着原子量的增加,首先出现非铁原子的复杂共存。磁,两个反铁磁和一个低自旋铁磁状态,然后是一个高自旋铁磁状态。此外,目前的计算还预测,在某些非平衡的Fe-Cu合金中,Fe原子的高自旋铁磁态可以在相对较宽的组成范围内得到稳定,这暗示了一种可能的方法来合成高性能的新型含Fe合金。磁化。进行了激烈的讨论,以将预测结果与来自实验以及先前报告的计算结果进行比较。事实证明,本计算可以合理地解释费铁和铁铜合金的磁性行为的丰富性和/或复杂性。

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