论文标题

L1 $ _0 $ FECO的库仑相关性和磁性特性:DFT+DMFT研究

Coulomb correlations and magnetic properties of L1$_0$ FeCo: a DFT+DMFT study

论文作者

Belozerov, A. S., Katanin, A. A., Anisimov, V. I.

论文摘要

我们认为电子相关效应及其对四方化学有序的FECO合金(L1 $ _0 $结构)的磁性特性的影响是对无稀性永久磁铁的有前途的候选人。我们采用一种结合密度功能和动态平均场理论的最先进方法。根据我们的结果,预测的居里温度随着晶格参数比$ c/a $的增加而降低,并在$ {c/a = 1.22} $时达到近850 K。对于所有考虑的$ c/a $从1到$ \ sqrt {2} $,我们在Fe站点上发现了良好的磁矩,这是由于源自Hund的耦合而形成的。同时,CO位点的磁性更为流动性,而局部磁矩的寿命要少得多。但是,由于洪德的交流,这些短暂的当地时刻也形成了。 Fe位点的电子状态以非Quasiparticle形式的自我源性为特征,而CO位置的电子状态则具有替代粒子质量增强因子$ {m^*/m \ sim 1.4} $,与中等较中等的金属相对应。在导致洪德金属行为的Fe位点上的强烈电子相关性可以通过状态密度的特殊性来解释,该状态的密度在费米水平附近显着峰值,而对CO地点的多体效应较弱的峰值可能是由于其3D $ $ 3D $状态的半填充而造成的。获得的磁敏感性的动量依赖性表明,除了FCC结构的近乎附近,预计铁磁序是最有利的,预计将是Rkky类型。

We consider electronic correlation effects and their impact on magnetic properties of tetragonally distorted chemically ordered FeCo alloys (L1$_0$ structure) being a promising candidate for rare-earth-free permanent magnets. We employ a state-of-the-art method combining density functional and dynamical mean-field theory. According to our results, the predicted Curie temperature reduces with increase of lattice parameters ratio $c/a$ and reaches nearly 850 K at ${c/a=1.22}$. For all considered $c/a$ from 1 to $\sqrt{2}$, we find well-localized magnetic moments on Fe sites, which are formed due to strong correlations originating from Hund's coupling. At the same time, magnetism of Co sites is more itinerant with a much less lifetime of local magnetic moments. However, these short-lived local moments are also formed due to Hund's exchange. Electronic states at Fe sites are characterized by a non-quasiparticle form of self-energies, while the ones for Co sites are found to have a Fermi-liquid-like shape with quasiparticle mass enhancement factor ${m^*/m\sim 1.4}$, corresponding to moderately correlated metal. The strong electron correlations on Fe sites leading to Hund's metal behaviour can be explained by peculiarities of the density of states, which has pronounced peaks near the Fermi level, while weaker many-body effects on Co sites can be caused by stronger deviation from half-filling of their $3d$ states. The obtained momentum dependence of magnetic susceptibility suggests that the ferromagnetic ordering is the most favourable one except for the near vicinity of the fcc structure and the magnetic exchange is expected to be of RKKY type.

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