论文标题

拓扑边缘状态在非富二二聚体链中的敏感性

Sensitivity of topological edge states in a non-Hermitian dimer chain

论文作者

Guo, Zhiwei, Zhang, Tengzhou, Song, Juan, Jiang, Haitao, Chen, Hong

论文摘要

一维二聚体链中的光子拓扑边缘状态长期以来一直被认为是通过绘制固态系统的拓扑Su-Schrieffer-Heeger模型来对结构扰动的鲁棒性。但是,由于近场耦合,有限拓扑二聚体链两端的边缘状态将相互作用。这导致手性对称性与精确的零能量偏离拓扑保护,从而削弱了拓扑边缘状态的稳健性。借助非热物理学,可以再次退化边缘状态的分裂频率,并通过改变结构的增益或损失强度来恢复拓扑保护。这一点合并被称为特殊点(EP)。 EPS在拓扑结构中有趣的物理特性引起了许多迷人和违反直觉现象。在这项工作中,基于由超潜伏的非二聚体链组成的有限的非二聚体链,我们从理论上并在实验上提出,当系统通过EP时,拓扑边缘状态的敏感性受到很大的影响。使用非热二聚体链的EP,我们实现了一种新的传感器,该传感器对结构末端的扰动很敏感,但可以拓扑受到内部扰动。我们展示了具有EP的非热拓扑结构,为开发不敏感的内部制造误差且对外部环境变化高度敏感的新型传感器铺平了道路。

Photonic topological edge states in one-dimensional dimer chains have long been thought to be robust to structural perturbations by mapping the topological Su-Schrieffer-Heeger model of a solid-state system. However, the edge states at the two ends of a finite topological dimer chain will interact as a result of near-field coupling. This leads to deviation from topological protection by the chiral symmetry from the exact zero energy, weakening the robustness of the topological edge state. With the aid of non-Hermitian physics, the splitting frequencies of edge states can be degenerated again and topological protection recovered by altering the gain or loss strength of the structure. This point of coalescence is known as the exceptional point (EP). The intriguing physical properties of EPs in topological structures give rise to many fascinating and counterintuitive phenomena. In this work, based on a finite non-Hermitian dimer chain composed of ultra-subwavelength resonators, we propose theoretically and verify experimentally that the sensitivity of topological edge states is greatly affected when the system passes through the EP. Using the EP of a non-Hermitian dimer chain, we realize a new sensor that is sensitive to perturbation at the end of the structure and yet topologically protected from internal perturbation. Our demonstration of a non-Hermitian topological structure with an EP paves the way for the development of novel sensors that are not sensitive to internal manufacturing errors but are highly sensitive to changes in the external environment.

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