Liu Huiying, Zhao Jianzhou, Huang Yue-Xin, Wu Weikang, Sheng Xian-Lei, Xiao Cong, Yang Shengyuan A
Research Laboratory for Quantum Materials, Singapore University of Technology and Design, Singapore 487372, Singapore.
Co-Innovation Center for New Energetic Materials, Southwest University of Science and Technology, Mianyang 621010, China.
Phys Rev Lett. 2021 Dec 31;127(27):277202. doi: 10.1103/PhysRevLett.127.277202.
Response properties that are purely intrinsic to physical systems are of paramount importance in physics research, as they probe fundamental properties of band structures and allow quantitative calculation and comparison with experiment. For anomalous Hall transport in magnets, an intrinsic effect can appear at the second order to the applied electric field. We show that this intrinsic second-order anomalous Hall effect is associated with an intrinsic band geometric property-the dipole moment of Berry-connection polarizability (BCP) in momentum space. The effect has scaling relation and symmetry constraints that are distinct from the previously studied extrinsic contributions. Particularly, in antiferromagnets with PT symmetry, the intrinsic effect dominates. Combined with first-principles calculations, we demonstrate the first quantitative evaluation of the effect in the antiferromagnet Mn_{2}Au. We show that the BCP dipole and the resulting intrinsic second-order conductivity are pronounced around band near degeneracies. Importantly, the intrinsic response exhibits sensitive dependence on the Néel vector orientation with a 2π periodicity, which offers a new route for electric detection of the magnetic order in PT-invariant antiferromagnets.
对于物理系统而言,纯内在的响应特性在物理学研究中至关重要,因为它们能探究能带结构的基本特性,并允许进行定量计算以及与实验进行比较。对于磁体中的反常霍尔输运,一种本征效应可能出现在外加电场的二阶项中。我们表明,这种本征二阶反常霍尔效应与一种本征能带几何性质相关——动量空间中贝里联络极化率(BCP)的偶极矩。该效应具有不同于先前研究的非本征贡献的标度关系和对称性约束。特别地,在具有PT对称性的反铁磁体中,本征效应占主导。结合第一性原理计算,我们展示了对反铁磁体Mn₂Au中该效应的首次定量评估。我们表明,BCP偶极以及由此产生的本征二阶电导率在能带简并附近很显著。重要的是,本征响应表现出对奈尔矢量取向的敏感依赖性,具有2π周期性,这为在PT不变反铁磁体中电探测磁序提供了一条新途径。