Enforced Symmetry Breaking for Anomalous Valley Hall Effect in Two-Dimensional Hexagonal Lattices

Yongqian Zhu, Jia Tao Sun*, Jinbo Pan, Jun Deng, Shixuan Du*

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

The anomalous valley Hall effect (AVHE) is a pivotal phenomenon that allows for the exploitation of the valley degree of freedom in materials. A general strategy for its realization and manipulation is crucial for valleytronics. Here, by considering all possible symmetries, we propose general rules for the realization and manipulation of AVHE in two-dimensional hexagonal lattices. The realization of AVHE requires breaking the enforced symmetry that is associated with different valleys or reverses the sign of Berry curvature. Further manipulation of AVHE requires asymmetry operators connecting two states with opposite signs of Berry curvature. These rules for realizing and manipulating AVHE are extendable to generic points in momentum space. Combined with first-principles calculations, we realize the controllable AVHE in four representative systems, i.e., monolayer AgCrP2Se6, CrOBr, FeCl2, and bilayer TcGeSe3. Our work provides symmetry rules for designing valleytronic materials that could facilitate the experimental detection and realistic applications.

源语言英语
文章编号046403
期刊Physical Review Letters
134
4
DOI
出版状态已出版 - 31 1月 2025

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Zhu, Y., Sun, J. T., Pan, J., Deng, J., & Du, S. (2025). Enforced Symmetry Breaking for Anomalous Valley Hall Effect in Two-Dimensional Hexagonal Lattices. Physical Review Letters, 134(4), 文章 046403. https://doi.org/10.1103/PhysRevLett.134.046403