Simulating higher-order topological insulators in density wave insulators

Kuan-Sen Lin, B. Bradlyn
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引用次数: 4

Abstract

Since the discovery of the Harper-Hofstadter model, it has been known that condensed matter systems with periodic modulations can be promoted to non-trivial topological states with emergent gauge fields in higher dimensions. In this work, we develop a general procedure to compute the gauge fields in higher dimensions associated to low-dimensional systems with periodic (charge- and spin-) density wave modulations. We construct two-dimensional (2D) models with modulations that can be promoted to higher-order topological phases with $U(1)$ and $SU(2)$ gauge fields in 3D. Corner modes in our 2D models can be pumped by adiabatic sliding of the phase of the modulation, yielding hinge modes in the promoted models. We also examine a 3D Weyl semimetal (WSM) gapped by charge-density wave (CDW) order, possessing quantum anomalous Hall (QAH) surface states. We show that this 3D system is equivalent to a 4D nodal line system gapped by a $U(1)$ gauge field with a nonzero second Chern number. We explain the recently identified interpolation between inversion-symmetry protected phases of the 3D WSM gapped by CDWs using the corresponding 4D theory. Our results can extend the search for (higher-order) topological states in higher dimensions to density wave systems.
密度波绝缘子中高阶拓扑绝缘子的模拟
自从Harper-Hofstadter模型的发现以来,人们已经知道具有周期调制的凝聚态系统可以被提升到具有高维涌现规范场的非平凡拓扑状态。在这项工作中,我们开发了一个通用的程序来计算与具有周期性(电荷和自旋)密度波调制的低维系统相关的高维规范场。我们构建了具有调制的二维(2D)模型,该模型可以在3D中提升到具有$U(1)$和$SU(2)$规范域的高阶拓扑相位。我们的二维模型中的角模可以通过调制相位的绝热滑动来泵浦,从而产生提升模型中的铰链模。我们还研究了一种具有量子异常霍尔(QAH)表面态的三维Weyl半金属(WSM),这种金属是由电荷密度波(CDW)顺序间隙形成的。我们证明了该三维系统等价于一个由$U(1)$规范域间隔的具有非零秒陈数的4D节点线系统。我们用相应的四维理论解释了最近发现的由CDWs间隙的三维WSM的逆对称保护相位之间的插值。我们的结果可以将高维(高阶)拓扑状态的搜索扩展到密度波系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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