磁化
凝聚态物理
量子反常霍尔效应
物理
简并能级
半金属
轨道磁化
量子霍尔效应
费米能级
磁场
铁磁性
量子自旋霍尔效应
朗道量子化
自旋(空气动力学)
霍尔效应
量子力学
磁各向异性
带隙
电子
作者
Zhao Liu,Gan Zhao,Bing Liu,Lili Wang,Jinlong Yang,Feng Liu
标识
DOI:10.1103/physrevlett.121.246401
摘要
So far, most theoretically predicted and experimentally confirmed quantum anomalous Hall effects (QAHEs) are limited in two-dimensional (2D) materials with out-of-plane magnetization. In this Letter, starting from 2D nodal-line semimetal, a general rule for searching QAHE with in-plane magnetization is mapped out. Because of spin-orbital coupling, we found that the magnetization will prefer an in-plane orientation if the orbital of degenerate nodal-line states at the Fermi level have the same absolute value of magnetic quantum number. Moreover, depending on the broken or conserved mirror symmetry, either a QAHE or 2D semimetal can be realized. Based on first principles calculations, we further predict a real material of monolayer LaCl to be an intrinsic QAHE with in-plane magnetization. By tuning the directions of in-plane magnetization, the QAHE in LaCl demonstrates a threefold rotational symmetry with a Chern number of either +1 or -1, and the transition point is characterized by a 2D semimetal phase. All these features are quantitatively reproduced by tight-binding model calculations, revealing the underlying physics clearly. Our results greatly extend the scope for material classes of QAHE and hence stimulate immediate experimental interest.
科研通智能强力驱动
Strongly Powered by AbleSci AI