论文标题

动量空间中的有效旋转模型:通过动量解决各向异性交流的互动对多重$ q $不稳定性有系统的理解

Effective spin model in momentum space: Toward a systematic understanding of multiple-$Q$ instability by momentum-resolved anisotropic exchange interactions

论文作者

Yambe, Ryota, Hayami, Satoru

论文摘要

多重$ Q $磁状态,例如天空晶体,成为不寻常的运输现象和动态的来源。最近的理论和实验研究阐明,这种多重$ Q $状态无处不在地出现在金属和绝缘体中的不同晶体结构下。为了系统地了解各种晶体系统中多$ Q $状态的形成,在这项理论研究中,我们提出了一种低能量的有效自旋模型,并在动量空间中具有各向异性交换相互作用。我们总结了非零对称和反对称各向异性交换的特定六个对称规则,在动量空间中,这被认为是莫里亚规则的扩展。根据规则,我们基于磁性表示分析,构建了具有晶体和动量依赖性各向异性交换相互作用的四方,六角形和三角形磁体的有效自旋模型。此外,我们通过扰动地分析具有自旋轨道耦合的多波段周期模型,描述了巡回磁铁中有效各向异性交换相互作用的起源。我们将有效的旋转模型应用于$ P6/mmm $ crystal的巡回磁铁,并找到具有旋转标量性手性的各种多重Q $状态。我们的结果为任何托管多重Q $状态的晶体系统构建有效的现象学旋转模型提供了基础,这将刺激与自旋轨道耦合的材料中对异国情调的多重Q $状态的进一步探索。

Multiple-$Q$ magnetic states, such as a skyrmion crystal, become a source of unusual transport phenomena and dynamics. Recent theoretical and experimental studies clarify that such multiple-$Q$ states ubiquitously appear under different crystal structures in metals and insulators. Toward a systematic understanding of the formation of the multiple-$Q$ states in various crystal systems, in this theoretical study, we present a low-energy effective spin model with anisotropic exchange interactions in momentum space. We summarize specific six symmetry rules for nonzero symmetric and antisymmetric anisotropic exchange interactions in momentum space, which are regarded as an extension of Moriya's rule. According to the rules, we construct the effective spin model for tetragonal, hexagonal, and trigonal magnets with crystal- and momentum-dependent anisotropic exchange interactions based on magnetic representation analysis. Furthermore, we describe the origin of the effective anisotropic exchange interactions in itinerant magnets by perturbatively analyzing a multi-band periodic Anderson model with the spin-orbit coupling. We apply the effective spin model to an itinerant magnet in a $P6/mmm$ crystal and find various multiple-$Q$ states with a spin scalar chirality in the ground state. Our results provide a foundation of constructing effective phenomenological spin models for any crystal systems hosting the multiple-$Q$ states, which will stimulate further exploration of exotic multiple-$Q$ states in materials with the spin-orbit coupling.

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