A new class of higher-order topological insulators that localize energy at arbitrary multiple sites

Yimeng Sun, Linjuan Wang, Huiling Duan, Jianxiang Wang
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Abstract

$\mathbb{Z}$-classified topological phases lead to larger-than-unity topological states. However, these multiple topological states are only localized at the corners in nonlocal systems. Here, first, we rigorously prove that the multiple topological states of nonlocal Su-Schrieffer-Heeger (SSH) chains can be inherited and realized by local aperiodic chains with only the nearest couplings. Then, we report a new class of higher-order topological insulators constructed with the local aperiodic chains, which can have any integer number of 0D topological states localized at arbitrary positions in the whole domain of the insulators, including within the bulk. The 0D topological states are protected by the local topological marker in each direction, instead of the bulk multipole chiral numbers in the existing work. Our work provides multiple combinations of localized corner-bulk topological states, which enables programmable lasers and sasers by selecting the excitation sites without altering the structure, and thus opens a new avenue to signal enhancement for computing and sensing.
一类在任意多个位点实现能量局域化的新型高阶拓扑绝缘体
$mathbb{Z}$分类拓扑相导致了大于单元的拓扑态。然而,在非局域系统中,这些多重拓扑态只集中在边角处。在这里,我们首先严格证明,非局部苏-施里弗-希格(SSH)链的多重拓扑态可以由局部非周期性链继承和实现,而且只需最近的耦合。然后,我们报告了一类用局部非周期性链构建的新的高阶拓扑绝缘体,它们可以在绝缘体的整个域(包括块体)的任意位置上具有任意整数的局部 0D 拓扑态。0D 拓扑态在每个方向上都受到局部拓扑标记的保护,而不是现有工作中的体层多极手性数。我们的工作提供了局部角-体拓扑态的多种组合,从而可以在不改变结构的情况下通过选择激发位点实现可编程激光器和激光器,从而为计算和传感的信号增强开辟了一条新途径。
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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