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Laves-phase (Zr,Nb)Fe2 alloys as model Invar systems without magnetic frustration: Comparison to Fe-Ni Invar

机译:Laves相(Zr,Nb)Fe2合金作为不具磁阻的Invar系统模型:与Fe-Ni Invar的比较

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摘要

We calculate the spontaneous volume magnetostriction and exchange interaction in C15 Laves-phase (Zr_(1-x)Nb_x)Fe_2 alloys, which exhibit a distinctive Invar-type anomaly in their thermal expansion. Our first-principles study is based on the disordered local-moment approximation and the magnetic force theorem applied in the framework of the local spin-density approximation and the Korringa-Kohn-Rostoker band-structure method. The theory presented is able to predict the qualitative difference in the thermal expansion between the systems considered. The exchange interactions in (Zr_(1-x)Nb_x)Fe_2 and in classical Fe-Ni Invar alloys have been recalculated and compared in a wide range of volumes. We find that the magnetic interactions in (Zr_(1-x)Nb_x)Fe_2 do not become frustrated at lower volumes contrary to the case of Fe-Ni Invar alloy. Thus, it is explicitly shown that antiferromagnetism and magnetic noncollinearity at low volumes are not a prerequisite for an Invar anomaly to occur.
机译:我们计算了C15 Laves相(Zr_(1-x)Nb_x)Fe_2合金的自发体积磁致伸缩和交换相互作用,这些合金在其热膨胀中表现出独特的Invar型异常。我们的第一性原理研究基于无序局部矩逼近,以及在局部自旋密度逼近和Korringa-Kohn-Rostoker能带结构方法框架中应用的磁力定理。提出的理论能够预测所考虑系统之间热膨胀的质量差异。 (Zr_(1-x)Nb_x)Fe_2和经典Fe-Ni Invar合金中的交换相互作用已被重新计算并在大体积范围内进行了比较。我们发现,与Fe-Ni Invar合金的情况相反,(Zr_(1-x)Nb_x)Fe_2中的磁性相互作用在较低的体积下不会受到阻碍。因此,明确表明,小体积的反铁磁性和磁性非共线性不是因瓦合金异常发生的先决条件。

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