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方格晶格中隐藏对称保护的拓扑半金属

Hidden-symmetry-protected topological semimetals on a square lattice.

机构信息

Department of Physics, Southeast University, Nanjing 211189, China.

出版信息

Phys Rev Lett. 2013 Sep 27;111(13):130403. doi: 10.1103/PhysRevLett.111.130403. Epub 2013 Sep 24.

Abstract

We study a two-dimensional fermionic square lattice, which supports the existence of a two-dimensional Weyl semimetal, quantum anomalous Hall effect, and 2π-flux topological semimetal in different parameter ranges. We show that the band degenerate points of the two-dimensional Weyl semimetal and 2π-flux topological semimetal are protected by two distinct novel hidden symmetries, which both correspond to antiunitary composite operations. When these hidden symmetries are broken, a gap opens between the conduction and valence bands, turning the system into a insulator. With appropriate parameters, a quantum anomalous Hall effect emerges. The degenerate point at the boundary between the quantum anomalous Hall insulator and trivial band insulator is also protected by the hidden symmetry.

摘要

我们研究了一个二维费米子晶格,它在不同的参数范围内支持二维外尔半金属、量子反常霍尔效应和 2π 通量拓扑半金属的存在。我们表明,二维外尔半金属和 2π 通量拓扑半金属的能带简并点受到两种不同的新型隐藏对称性的保护,这两种对称性都对应于反单元复合操作。当这些隐藏对称性被破坏时,导带和价带之间会出现间隙,从而使系统变成绝缘体。在适当的参数下,会出现量子反常霍尔效应。量子反常霍尔绝缘体和平凡带绝缘体边界处的简并点也受到隐藏对称性的保护。

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