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Free energy of mixing of an Fe-Co liquid alloy taking into account nondiagonal d-d-electron coupling in the framework of the Willis-Harrison model

机译:在Willis-Harrison模型的框架中考虑非对角d-d-电子耦合的Fe-Co液态合金混合自由能

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摘要

Within the framework of the Willis-Harrison model, the effect of taking into account d-d-electron couplings nondiagonal in the magnetic quantum number between the neighboring atoms in a transition metal on the partial pair potentials and the free energy of mixing of an Fe-Co liquid alloy near the melting temperature is investigated. It is found that an increase in the fraction of nondiagonal couplings results in a decrease in the depth of the first minimum of the partial pair potentials and in the displacement of its position towards larger r. It is shown that taking this factor into account considerably improves the agreement with experimental data of the concentration dependence of the free energy of mixing of the system under consideration.
机译:在威利斯-哈里森(Willis-Harrison)模型的框架内,考虑过渡金属中相邻原子之间的磁性量子数中的非对角线中dd电子耦合对部分对电势和Fe-Co混合自由能的影响对液态合金附近的熔化温度进行了研究。发现非对角耦合的分数的增加导致部分对电势的第一个最小值的深度减小,并且其位置朝着较大的r位移。结果表明,考虑该因素可大大改善与所考虑的系统混合自由能的浓度依赖性的实验数据的一致性。

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