Mechanism and Modulation of Chiral Semimetal with Coexistence Surface State of Z2 and Chern under Vector Field

IF 0.9 4区 物理与天体物理 Q4 PHYSICS, CONDENSED MATTER Physics of the Solid State Pub Date : 2024-11-01 DOI:10.1134/S1063783424601292
Hui Zhao, Hailong Wang, Hui Pan
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Abstract

In this paper, we investigated the surface states of the chiral semimetal under the three-dimensional (3D) vector external field. Firstly, we introduced a Lorentz rotation transformation to transform the 3D vector field into a one-dimensional scalar field to calculate the surface state of the system. We found that there were two types of surface states as drumhead surface state and coexistence surface state of Z2 and Chern. And the topological invariant of the coexistence state with mirror symmetry breaking was calculated by a mirror Chern number. Then, by theoretical analysis and numerical calculation of the zero mode under the 3D external field we found that the coexistence surface state still existed when the emergent symmetries were broken, which demonstrated the coexistence is robust to the emergent symmetries. This work provided a convenient method for the experimental study of 3D vector external field. As well as the calculation of the precise control of surface states by a 3D vector field can be a feasible method for field measurement in the surface engineering field.

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矢量场下 Z2 和 Chern 共存表面态手性半金属的机理与调制
本文研究了手性半金属在三维(3D)矢量外场下的表面态。首先,我们引入洛伦兹旋转变换,将三维矢量场转化为一维标量场,从而计算出系统的表面态。我们发现存在两种表面态,即鼓头表面态和 Z2 与 Chern 共存表面态。并通过镜像切尔数计算了镜像对称破缺共存态的拓扑不变性。然后,通过对三维外场下零模的理论分析和数值计算,我们发现当突现对称性被打破时,共存表面态仍然存在,这表明共存对突现对称性具有鲁棒性。这项工作为三维矢量外场的实验研究提供了一种便捷的方法。同时,三维矢量场对表面态精确控制的计算也是表面工程领域场测量的一种可行方法。
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来源期刊
Physics of the Solid State
Physics of the Solid State 物理-物理:凝聚态物理
CiteScore
1.70
自引率
0.00%
发文量
60
审稿时长
2-4 weeks
期刊介绍: Presents the latest results from Russia’s leading researchers in condensed matter physics at the Russian Academy of Sciences and other prestigious institutions. Covers all areas of solid state physics including solid state optics, solid state acoustics, electronic and vibrational spectra, phase transitions, ferroelectricity, magnetism, and superconductivity. Also presents review papers on the most important problems in solid state physics.
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