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EuB₆中自发铁磁性诱导的拓扑转变

Spontaneous Ferromagnetism Induced Topological Transition in EuB_{6}.

作者信息

Liu W L, Zhang X, Nie S M, Liu Z T, Sun X Y, Wang H Y, Ding J Y, Jiang Q, Sun L, Xue F H, Huang Z, Su H, Yang Y C, Jiang Z C, Lu X L, Yuan J, Cho Soohyun, Liu J S, Liu Z H, Ye M, Zhang S L, Weng H M, Liu Z, Guo Y F, Wang Z J, Shen D W

机构信息

Center for Excellence in Superconducting Electronics, State Key Laboratory of Functional Materials for Informatics, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China.

School of Physical Science and Technology, ShanghaiTech University, Shanghai 201210, China.

出版信息

Phys Rev Lett. 2022 Oct 14;129(16):166402. doi: 10.1103/PhysRevLett.129.166402.

Abstract

The interplay between various symmetries and electronic bands topology is one of the core issues for topological quantum materials. Spontaneous magnetism, which leads to the breaking of time-reversal symmetry, has been proven to be a powerful approach to trigger various exotic topological phases. In this Letter, utilizing the combination of angle-resolved photoemission spectroscopy, magneto-optical Kerr effect microscopy, and first-principles calculations, we present the direct evidence on the realization of the long-sought spontaneous ferromagnetism induced topological transition in soft ferromagnetic EuB_{6}. Explicitly, we reveal the topological transition is from Z_{2}=1 topological insulator in paramagnetic state to χ=1 magnetic topological semimetal in low temperature ferromagnetic state. Our results demonstrate that the simple band structure near the Fermi level and rich topological phases make EuB_{6} an ideal platform to study the topological phase physics.

摘要

各种对称性与电子能带拓扑结构之间的相互作用是拓扑量子材料的核心问题之一。自发磁性会导致时间反演对称性的破缺,已被证明是引发各种奇异拓扑相的有力方法。在本信函中,利用角分辨光电子能谱、磁光克尔效应显微镜和第一性原理计算相结合的方法,我们给出了在软铁磁体EuB₆中实现长期以来所寻求的自发铁磁性诱导拓扑转变的直接证据。具体而言,我们揭示了拓扑转变是从顺磁态的Z₂ = 1拓扑绝缘体到低温铁磁态的χ = 1磁性拓扑半金属。我们的结果表明,费米能级附近简单的能带结构和丰富的拓扑相使EuB₆成为研究拓扑相物理的理想平台。

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