Berry连接和曲率
磁电阻
Weyl半金属
凝聚态物理
物理
手征异常
霍尔效应
磁化
热霍尔效应
反对称关系
磁场
半金属
量子力学
费米子
几何相位
带隙
数学物理
作者
Bingyan Jiang,Lujunyu Wang,R. Bi,Jie Fan,Jiaji Zhao,Dapeng Yu,Zhilin Li,Xiaosong Wu
标识
DOI:10.1103/physrevlett.126.236601
摘要
Weyl semimetals host a variety of exotic effects that have no counterpart in conventional materials, such as the chiral anomaly and magnetic monopole in momentum space. These effects give rise to unusual transport properties, including a negative magnetoresistance and a planar Hall effect, etc. Here, we report a new type of Hall and magnetoresistance effect in a magnetic Weyl semimetal. Unlike antisymmetric (with respect to either magnetic field or magnetization) Hall and symmetric magnetoresistance in conventional materials, the discovered magnetoresistance and Hall effect are antisymmetric in both magnetic field and magnetization. We show that the Berry curvature, the tilt of the Weyl node, and the chiral anomaly synergically produce these phenomena. Our results reveal a unique property of Weyl semimetals with broken time reversal symmetry.
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