Department of Physics and Astronomy, Seoul National University, Seoul 08826, Korea; Center for Correlated Electron Systems, Institute for Basic Science (IBS), Seoul 08826, Korea; and Center for Theoretical Physics (CTP), Seoul National University, Seoul 08826, Korea.
Phys Rev Lett. 2023 Jun 30;130(26):266703. doi: 10.1103/PhysRevLett.130.266703.
Some antiferromagnets under a magnetic field develop magnetization perpendicular to the field as well as more conventional ones parallel to the field. So far, the transverse magnetization (TM) has been attributed to either the spin canting effect or the presence of cluster magnetic multipolar ordering. However, a general theory of TM based on microscopic understanding is still missing. Here, we construct a general microscopic theory of TM in antiferromagnets with cluster magnetic multipolar ordering by considering classical spin Hamiltonians with spin anisotropy that arises from the spin-orbit coupling. First, from general symmetry analysis, we show that TM can appear only when all crystalline symmetries are broken other than the antiunitary mirror, antiunitary twofold rotation, and inversion symmetries. Moreover, by analyzing spin Hamiltonians, we show that TM always appears when the degenerate ground state manifold of the spin Hamiltonian is discrete, as long as it is not prohibited by symmetry. On the other hand, when the degenerate ground state manifold is continuous, TM generally does not appear except when the magnetic field direction and the spin configuration satisfy specific geometric conditions under single-ion anisotropy. Finally, we show that TM can induce the anomalous planar Hall effect, a unique transport phenomenon that can be used to probe multipolar antiferromagnetic structures. We believe that our theory provides a useful guideline for understanding the anomalous magnetic responses of the antiferromagnets with complex magnetic structures.
一些在磁场下的反铁磁体除了产生与磁场平行的常规磁化之外,还会产生垂直于磁场的磁化。到目前为止,横向磁化(TM)归因于自旋倾斜效应或磁多极有序的存在。然而,基于微观理解的 TM 的一般理论仍然缺失。在这里,我们通过考虑由自旋轨道耦合引起的各向异性的经典自旋哈密顿量,构建了一个具有磁多极有序的反铁磁体中 TM 的一般微观理论。首先,从一般的对称性分析中,我们表明只有当除了反幺正镜、反幺正两倍旋转和反演对称性之外的所有晶体对称性都被破坏时,TM 才会出现。此外,通过分析自旋哈密顿量,我们表明只要自旋哈密顿量的简并基态是离散的,TM 就会出现,只要它不受对称性的限制。另一方面,当简并基态是连续的时,TM 通常不会出现,除非在单离子各向异性下磁场方向和自旋构型满足特定的几何条件。最后,我们表明 TM 可以诱导反常平面霍尔效应,这是一种独特的输运现象,可用于探测多极反铁磁结构。我们相信,我们的理论为理解具有复杂磁结构的反铁磁体的异常磁响应提供了有用的指导。