Fan Feng-Ren, Xiao Cong, Yao Wang
New Cornerstone Science Laboratory, Department of Physics, University of Hong Kong, Hong Kong, China.
HKU-UCAS Joint Institute of Theoretical and Computational Physics at Hong Kong, Hong Kong, China.
Nat Commun. 2024 Sep 12;15(1):7997. doi: 10.1038/s41467-024-52314-5.
We discover an intrinsic dipole Hall effect in a variety of magnetic insulating states at integer fillings of twisted MoTe moiré superlattice, including topologically trivial and nontrivial ferro-, antiferro-, and ferri-magnetic configurations. The dipole Hall current, in linear response to in-plane electric field, generates an in-plane orbital magnetization M along the field, through which an AC field can drive magnetization oscillation up to THz range. Upon the continuous topological phase transitions from trivial to quantum anomalous Hall states in both ferromagnetic and antiferromagnetic configurations, the dipole Hall current and M have an abrupt sign change, enabling contact-free detection of the transitions through the magnetic stray field. In configurations where the linear response is forbidden by symmetry, the dipole Hall current and M appear as a crossed nonlinear response to both in-plane and out-of-plane electric fields. These magnetoelectric phenomena showcase fascinating functionalities of insulators from the interplay between magnetism, topology, and electrical polarization.
我们在扭曲的MoTe莫尔超晶格的整数填充下的各种磁绝缘状态中发现了一种本征偶极霍尔效应,包括拓扑平凡和非平凡的铁磁、反铁磁和亚铁磁构型。偶极霍尔电流在对平面内电场的线性响应中,会沿电场方向产生一个平面内轨道磁化强度M,通过它一个交流场可以驱动高达太赫兹范围的磁化振荡。在铁磁和反铁磁构型中从平凡态到量子反常霍尔态的连续拓扑相变过程中,偶极霍尔电流和M会发生突然的符号变化,从而能够通过磁杂散场对相变进行无接触检测。在对称性禁止线性响应的构型中,偶极霍尔电流和M表现为对平面内和平面外电场的交叉非线性响应。这些磁电现象展示了绝缘体在磁性、拓扑和电极化相互作用下令人着迷的功能。