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无反转对称半导体带隙闭合中的拓扑半金属的出现。

Emergence of topological semimetals in gap closing in semiconductors without inversion symmetry.

机构信息

Department of Physics, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8551, Japan.

Tokodai Institute for Element Strategy, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8551, Japan.

出版信息

Sci Adv. 2017 May 12;3(5):e1602680. doi: 10.1126/sciadv.1602680. eCollection 2017 May.

Abstract

A band gap for electronic states in crystals governs various properties of solids, such as transport, optical, and magnetic properties. Its estimation and control have been an important issue in solid-state physics. The band gap can be controlled externally by various parameters, such as pressure, atomic compositions, and external field. Sometimes, the gap even collapses by tuning some parameter. In the field of topological insulators, this closing of the gap at a time-reversal invariant momentum indicates a band inversion, that is, it leads to a topological phase transition from a normal insulator to a topological insulator. We show, through an exhaustive study on possible space groups, that the gap closing in inversion-asymmetric crystals is universal, in the sense that the gap closing always leads either to a Weyl semimetal or to a nodal-line semimetal. We consider three-dimensional spinful systems with time-reversal symmetry. The space group of the system and the wave vector at the gap closing uniquely determine which possibility occurs and where the gap-closing points or lines lie in the wave vector space after the closing of the gap. In particular, we show that an insulator-to-insulator transition never happens, which is in sharp contrast to inversion-symmetric systems.

摘要

晶体中的电子态带隙控制着固体的各种性质,如输运、光学和磁性质。其估计和控制一直是固态物理中的一个重要问题。通过各种参数,如压力、原子组成和外场,可以对外界控制带隙。有时,通过调整某些参数甚至会导致带隙的坍塌。在拓扑绝缘体领域,在时间反演不变动量处的带隙关闭表明带隙反转,即它导致了从正常绝缘体到拓扑绝缘体的拓扑相变。我们通过对可能的空间群进行详尽的研究表明,在非对称反转晶体中带隙的关闭是普遍的,从正常绝缘体到拓扑绝缘体的转变是拓扑相变。我们考虑具有时间反演对称性的三维自旋系统。系统的空间群和带隙处的波矢唯一地决定了哪种可能性发生,以及在带隙关闭后,带隙关闭点或线在波矢空间中的位置。特别是,我们表明,绝缘体到绝缘体的转变永远不会发生,这与非对称反转系统形成鲜明对比。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8eda/5429037/163e25e6c08f/1602680-F1.jpg

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