论文标题

由Hund的交换耦合引起的相关电子材料中磁波的轨道各向同性

Orbital isotropy of magnetic fluctuations in correlated electron materials induced by Hund's exchange coupling

论文作者

Stepanov, Evgeny A., Nomura, Yusuke, Lichtenstein, Alexander I., Biermann, Silke

论文摘要

表征具有强烈电子库仑相互作用的材料中非本地磁波的表征仍然是现代冷凝物质理论的主要杰出挑战之一。在这项工作中,我们解决了钙钛矿材料中磁波的空间对称性和轨道结构。为此,我们开发了动态平均场理论的一致的多轨图表扩展,我们将其应用于各向异性三轨模型的立方$ t_ {2g} $对称性。我们发现,空间自旋波动的形式受当地洪德的耦合的控制。对于耦合的少量值,磁波动是轨道空间中各向异性的,它反映了所考虑的$ t_ {2g} $模型的对称性。大型洪德的耦合增强了集体自旋激发,它混合了轨道和空间自由度,磁波动变成轨道各向同性。值得注意的是,这种效果只能以两粒子量看到。单粒子可观测值仍然是各向异性的,对于hund耦合的任何值。重要的是,我们发现轨道各向同性可以在半填充和每个晶格的$ 4 $电子的情况下诱导,其中磁性不稳定性分别与不同的,抗铁磁和铁磁模式相关联。

Characterizing non-local magnetic fluctuations in materials with strong electronic Coulomb interactions remains one of the major outstanding challenges of modern condensed matter theory. In this work we address the spatial symmetry and orbital structure of magnetic fluctuations in perovskite materials. To this aim, we develop a consistent multi-orbital diagrammatic extension of dynamical mean field theory, which we apply to an anisotropic three-orbital model of cubic $t_{2g}$ symmetry. We find that the form of spatial spin fluctuations is governed by the local Hund's coupling. For small values of the coupling, magnetic fluctuations are anisotropic in orbital space, which reflects the symmetry of the considered $t_{2g}$ model. Large Hund's coupling enhances collective spin excitations, which mixes orbital and spatial degrees of freedom, and magnetic fluctuations become orbitally isotropic. Remarkably, this effect can be seen only in two-particle quantities; single-particle observables remain anisotropic for any value of the Hund's coupling. Importantly, we find that the orbital isotropy can be induced both, at half-filling and for the case of $4$ electrons per lattice site, where the magnetic instability is associated with different, antiferromagnetic and ferromagnetic modes, respectively.

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