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量子自旋霍尔相变附近的时间反演对称破缺向列相绝缘体态

Time-Reversal Symmetry-Breaking Nematic Insulators near Quantum Spin Hall Phase Transitions.

机构信息

Department of Physics, University of Texas at Austin, Austin Texas 78712, USA.

出版信息

Phys Rev Lett. 2018 May 4;120(18):186802. doi: 10.1103/PhysRevLett.120.186802.

Abstract

We study the phase diagram of a model quantum spin Hall system as a function of band inversion and band-coupling strength, demonstrating that when band hybridization is weak, an interaction-induced nematic insulator state emerges over a wide range of band inversion. This property is a consequence of the long-range Coulomb interaction, which favors interband phase coherence that is weakly dependent on momentum and therefore frustrated by the single-particle Hamiltonian at the band inversion point. For weak band hybridization, interactions convert the continuous gap closing topological phase transition at inversion into a pair of continuous phase transitions bounding a state with broken time-reversal and rotational symmetries. At intermediate band hybridization, the topological phase transition proceeds instead via a quantum anomalous Hall insulator state, whereas at strong hybridization interactions play no role. We comment on the implications of our findings for InAs/GaSb and HgTe/CdTe quantum spin Hall systems.

摘要

我们研究了模型量子自旋 Hall 系统的相图作为带反转和带耦合强度的函数,证明了当带杂化较弱时,在较宽的带反转范围内会出现由相互作用诱导的向列绝缘体态。这种特性是长程库仑相互作用的结果,它有利于带间相位相干,而这种相干性对动量的依赖性较弱,因此在带反转点处被单粒子哈密顿量所阻碍。对于较弱的带杂化,相互作用将在反转处的连续能隙关闭拓扑相变转换为一对连续相变,其边界是具有破坏时间反转和旋转对称性的状态。在中等带杂化的情况下,拓扑相变则是通过量子反常霍尔绝缘体态进行的,而在强杂化的情况下,相互作用则不起作用。我们评论了我们的发现对 InAs/GaSb 和 HgTe/CdTe 量子自旋 Hall 系统的意义。

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