Nonlinear electric transport in odd-parity magnetic multipole systems: Application to Mn-based compounds

Hikaru Watanabe, Y. Yanase
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引用次数: 19

Abstract

Violation of parity symmetry gives rise to various physical phenomena such as nonlinear transport and cross-correlated responses. In particular, the nonlinear conductivity has been attracting a lot of attentions in spin-orbit coupled semiconductors, superconductors, topological materials, and so on. In this paper we present theoretical study of the nonlinear conductivity in odd-parity magnetic multipole ordered systems whose $\mathcal{PT}$-symmetry is essentially distinct from the previously studied acentric systems. Combining microscopic formulation and symmetry analysis, we classify the nonlinear responses in the $\mathcal{PT}$-symmetric systems as well as $\mathcal{T}$-symmetric (non-magnetic) systems, and uncover nonlinear conductivity unique to the odd-parity magnetic multipole systems. A giant nonlinear Hall effect, nematicity-assisted dichroism and magnetically-induced Berry curvature dipole effect are proposed and demonstrated in a model for Mn-based magnets.
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奇宇称磁多极体系中的非线性电输运:在锰基化合物中的应用
宇称对称性的破坏引起了各种物理现象,如非线性输运和交叉相关响应。特别是在自旋轨道耦合半导体、超导体、拓扑材料等领域中,非线性电导率问题引起了人们的广泛关注。本文对奇宇称磁多极有序系统的非线性电导率进行了理论研究,该系统的$\数学{PT}$对称性与以往研究的非中心系统有本质区别。结合微观公式和对称性分析,我们对$\mathcal{PT}$对称系统和$\mathcal{T}$对称(非磁性)系统中的非线性响应进行了分类,并揭示了奇宇称磁多极子系统特有的非线性电导率。提出并证明了锰基磁体的巨大非线性霍尔效应、向列辅助二色性和磁致Berry曲率偶极子效应。
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