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非互易耦合Su-Schrieffer-Heeger链中的局域光子态与动态过程

Localized photonic states and dynamic process in nonreciprocal coupled Su-Schrieffer-Heeger chain.

作者信息

Cui Wen-Xue, Qi Lu, Xing Yan, Liu Shutian, Zhang Shou, Wang Hong-Fu

出版信息

Opt Express. 2020 Nov 23;28(24):37026-37039. doi: 10.1364/OE.403330.

Abstract

We investigate the localized photonic states and dynamic process in one-dimensional nonreciprocal coupled Su-Schrieffer-Heeger chain. Through numerical calculation of energy eigenvalue spectrum and state distributions of the system, we find that different localized photonic states with special energy eigenvalues can be induced by the nonreciprocal coupling, such as zero-energy edge states, interface states and bound states with pure imaginary energy eigenvalues. Moreover, we analyze the dynamic process of photonic states in such non-Hermitian system. Interestingly, it is shown that the nonreciprocal coupling has an evident gathering effect on the photons, which also break the trapping effect of topologically protected edge states. In addition, we consider the impacts of on-site defect potentials on the dynamic process of photonic states for the system. It is indicated that the photons go around the defect lattice site and still present the gathering effect, and different forms of laser pulses can be induced with the on-site defect potentials in different lattice sites. Furthermore, we present the method for the quantum simulation of current model based on the circuit quantum electrodynamic lattice.

摘要

我们研究了一维非互易耦合的Su-Schrieffer-Heeger链中的局域光子态和动力学过程。通过对系统的能量本征值谱和态分布进行数值计算,我们发现非互易耦合可以诱导出具有特殊能量本征值的不同局域光子态,如零能边缘态、界面态和具有纯虚数能量本征值的束缚态。此外,我们分析了这种非厄米系统中光子态的动力学过程。有趣的是,结果表明非互易耦合对光子具有明显的聚集效应,这也打破了拓扑保护边缘态的俘获效应。另外,我们考虑了在位缺陷势对系统光子态动力学过程的影响。结果表明,光子绕过缺陷晶格位点并仍然呈现聚集效应,并且在不同晶格位点的在位缺陷势可以诱导出不同形式的激光脉冲。此外,我们提出了基于电路量子电动力学晶格对当前模型进行量子模拟的方法。

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