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体心立方铁磁体Fe中海森堡和非海森堡交换相互作用的微观起源

Microscopic Origin of Heisenberg and Non-Heisenberg Exchange Interactions in Ferromagnetic bcc Fe.

作者信息

Kvashnin Y O, Cardias R, Szilva A, Di Marco I, Katsnelson M I, Lichtenstein A I, Nordström L, Klautau A B, Eriksson O

机构信息

Department of Physics and Astronomy, Division of Materials Theory, Uppsala University, Box 516, SE-75120 Uppsala, Sweden.

Faculdade de Fisica, Universidade Federal do Para, Belem, Pará 66075-110, Brazil.

出版信息

Phys Rev Lett. 2016 May 27;116(21):217202. doi: 10.1103/PhysRevLett.116.217202.

Abstract

By means of first principles calculations, we investigate the nature of exchange coupling in ferromagnetic bcc Fe on a microscopic level. Analyzing the basic electronic structure reveals a drastic difference between the 3d orbitals of E_{g} and T_{2g} symmetries. The latter ones define the shape of the Fermi surface, while the former ones form weakly interacting impurity levels. We demonstrate that, as a result of this, in Fe the T_{2g} orbitals participate in exchange interactions, which are only weakly dependent on the configuration of the spin moments and thus can be classified as Heisenberg-like. These couplings are shown to be driven by Fermi surface nesting. In contrast, for the E_{g} states, the Heisenberg picture breaks down since the corresponding contribution to the exchange interactions is shown to strongly depend on the reference state they are extracted from. Our analysis of the nearest-neighbor coupling indicates that the interactions among E_{g} states are mainly proportional to the corresponding hopping integral and thus can be attributed to be of double-exchange origin. By making a comparison to other magnetic transition metals, we put the results of bcc Fe into context and argue that iron has a unique behavior when it comes to magnetic exchange interactions.

摘要

通过第一性原理计算,我们在微观层面研究了体心立方铁磁体Fe中的交换耦合性质。对基本电子结构的分析揭示了具有E₉和T₂₉对称性的3d轨道之间的巨大差异。后者定义了费米面的形状,而前者形成弱相互作用的杂质能级。我们证明,由此导致的结果是,在Fe中T₂₉轨道参与交换相互作用,这种相互作用仅微弱地依赖于自旋矩的构型,因此可归类为类海森堡型。这些耦合被证明是由费米面嵌套驱动的。相比之下,对于E₉态,海森堡图像失效,因为对交换相互作用的相应贡献强烈依赖于从中提取的参考态。我们对最近邻耦合分析表明,E₉态之间的相互作用主要与相应的跳跃积分成正比,因此可归因于双交换起源。通过与其他磁性过渡金属进行比较,我们将体心立方铁的结果置于背景中,并认为在磁交换相互作用方面铁具有独特的行为。

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