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a-通量正方晶格上的非平衡手性高阶拓扑绝缘体

Out of equilibrium chiral higher order topological insulator on a-flux square lattice.

作者信息

Bhat Ruchira V, Bera Soumya

机构信息

Department of Physics, Indian Institute of Technology Bombay, Mumbai 400076, India.

出版信息

J Phys Condens Matter. 2021 Apr 20;33(16). doi: 10.1088/1361-648X/abf0c3.

Abstract

One of the hallmarks of bulk topology is the existence of robust boundary localized states. For instance, a conventionaldimensional topological system hosts- 1 dimensional surface modes, which are protected by non-spatial symmetries. Recently, this idea has been extended to higher order topological phases with boundary modes that are localized in lower dimensions such as in the corners or in one dimensional hinges of the system. In this work, we demonstrate that a higher order topological phase can be engineered in a nonequilibrium state when the time-independent model does not possess any symmetry protected topological states. The higher order topology is protected by an emerging chiral symmetry, which is generated through the Floquet driving. Using both the exact numerical method and an effective high-frequency Hamiltonian obtained from the Brillouin-Wigner (BW) perturbation theory, we verify the emerging topological phase on a-flux square lattice. We show that the localized corner modes in our model are robust against a chiral symmetry preserving perturbation and can be classified as 'extrinsic' higher order topological phase. Finally, we identify a two dimensional topological invariant from the winding number of the corresponding sublattice symmetric one dimensional model. The latter model belongs to class AIII of ten-fold symmetry classification of topological matter.

摘要

体拓扑的一个标志是存在稳健的边界局域态。例如,一个常规的二维拓扑系统具有受非空间对称性保护的一维表面模式。最近,这个想法已扩展到高阶拓扑相,其边界模式局域在更低维度,比如系统的角或一维棱边处。在这项工作中,我们证明当与时间无关的模型不具有任何对称性保护的拓扑态时,可以在非平衡态中构建高阶拓扑相。高阶拓扑由通过弗洛凯驱动产生的新兴手征对称性保护。使用精确数值方法和从布里渊 - 维格纳(BW)微扰理论得到的有效高频哈密顿量,我们在α通量方格上验证了新兴的拓扑相。我们表明我们模型中的局域角模式对手征对称性保持微扰具有鲁棒性,并且可以归类为“外在”高阶拓扑相。最后,我们从相应子晶格对称一维模型的缠绕数中确定一个二维拓扑不变量。后一个模型属于拓扑物质十重对称性分类的AIII类。

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