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交变磁性的朗道理论。

Landau Theory of Altermagnetism.

作者信息

McClarty Paul A, Rau Jeffrey G

机构信息

Laboratoire Léon Brillouin, UMR12 CEA-CNRS, Université Paris-Saclay, CEA Saclay, 91191 Gif-sur-Yvette, France.

Max Planck Institute for the Physics of Complex Systems, Nöthnitzer Strasse 38, 01187 Dresden, Germany.

出版信息

Phys Rev Lett. 2024 Apr 26;132(17):176702. doi: 10.1103/PhysRevLett.132.176702.

Abstract

We formulate a Landau theory for altermagnets, a class of collinear compensated magnets with spin-split bands. Starting from the nonrelativistic limit, this Landau theory goes beyond a conventional analysis by including spin-space symmetries, providing a simple framework for understanding the key features of this family of materials. We find a set of multipolar secondary order parameters connecting existing ideas about the spin symmetries of these systems, their order parameters, and the effect of nonzero spin-orbit coupling. We account for several features of canonical altermagnets such as RuO_{2}, MnTe, and CuF_{2} that go beyond symmetry alone, relating the order parameter to key observables such as magnetization, anomalous Hall conductivity, and magnetoelastic and magneto-optical probes. Finally, we comment on generalizations of our framework to a wider family of exotic magnetic systems derived from the zero spin-orbit coupled limit.

摘要

我们为交替磁体构建了一种朗道理论,交替磁体是一类具有自旋分裂能带的共线补偿磁体。从非相对论极限出发,这种朗道理论超越了传统分析,纳入了自旋空间对称性,为理解这类材料的关键特性提供了一个简单框架。我们发现了一组多极二级序参量,它们将关于这些系统的自旋对称性、序参量以及非零自旋轨道耦合效应的现有观点联系起来。我们解释了典型交替磁体(如RuO₂、MnTe和CuF₂)的几个特性,这些特性不仅仅取决于对称性,还将序参量与诸如磁化强度、反常霍尔电导率以及磁弹性和磁光探针等关键可观测量联系起来。最后,我们评论了将我们的框架推广到从零自旋轨道耦合极限导出的更广泛的奇异磁体家族的情况。

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