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Electronic structure, chemical bonding, and magnetic properties in the intermetallic series Sc_2Fe(Ru_(1-x)Rh_x)_5B_2 from first principles

机译:从第一原理出发,金属间化合物序列Sc_2Fe(Ru_(1-x)Rh_x)_5B_2中的电子结构,化学键和磁性

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摘要

First-principles, density-functional studies of the electronic structure, chemical bonding, ground-state magnetic ordering, and exchange-interaction parameters have been performed for the entire Sc_2Fe(Ru_(1-x)Rh_x)_5B_2 series of magnetic compounds. The results indicate that their magnetic properties depend in an extremely sensitive way on the degree of band filling and bandwidth. Continuous substitution of Ru by Rh changes the ground state from an antiferromagnet to a ferromagnet, as well as increases the effective spin moment caused by filling the bands with five additional electrons per formula unit together with a narrowing of the Ad band. The correlations between the character of the chemical bonding and the resulting exchange couplings are discussed. The enhancement of Fe-Fe exchange coupling caused by Rh/Ru atoms is estimated. Trends for the macroscopic ordering temperatures are correctly reproduced.
机译:首先,对整个Sc_2Fe(Ru_(1-x)Rh_x)_5B_2系列磁性化合物进行了电子结构,化学键合,基态磁性有序化和交换相互作用参数的密度原理研究。结果表明,它们的磁性非常敏感地取决于带的填充程度和带宽。用Rh连续取代Ru会将基态从反铁磁体变为铁磁体,并增加了通过在每个公式单元中用五个附加电子填充能带并缩小Ad能带而引起的有效自旋矩。讨论了化学键的性质与所得交换偶联之间的相关性。估计了由Rh / Ru原子引起的Fe-Fe交换耦合的增强。宏观订购温度的趋势可以正确再现。

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