Dynamic Phase Enabled Topological Mode Steering in Composite Su‐Schrieffer–Heeger Waveguide Arrays

Min Tang, Chi Pang, Christian N. Saggau, Haiyun Dong, Ching Hua Lee, Ronny Thomale, Sebastian Klembt, Ion Cosma Fulga, Jeroen van den Brink, Yana Vaynzof, Oliver G. Schmidt, Jiawei Wang, Libo Ma
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Abstract

Topological boundary states localize at interfaces whenever the interface implies a change of the associated topological invariant encoded in the geometric phase. The generically present dynamic phase, however, which is energy and time‐dependent, is known to be non‐universal, and hence not to intertwine with any topological geometric phase. Using the example of topological zero modes in composite Su‐Schrieffer‐Heeger (c‐SSH) waveguide arrays with a central defect is reported on the selective excitation and transition of topological boundary mode based on dynamic phase‐steered interferences. This work thus provides a new knob for the control and manipulation of topological states in composite photonic devices, indicating promising applications where topological modes and their bandwidth can be jointly controlled by the dynamic phase, geometric phase, and wavelength in on‐chip topological devices.
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复合 Su-Schrieffer-Heeger 波导阵列中的动态相位拓扑模式转向
只要界面意味着几何相位中编码的相关拓扑不变量发生变化,拓扑边界态就会在界面上定位。然而,众所周知,一般存在的动态相位与能量和时间有关,是非普遍性的,因此不会与任何拓扑几何相位交织在一起。以具有中心缺陷的复合苏-施里弗-黑格(c-SSH)波导阵列中的拓扑零模为例,报告了基于动态相位转向干涉的拓扑边界模的选择性激发和转换。因此,这项工作为控制和操纵复合光子器件中的拓扑态提供了一个新的诀窍,表明在片上拓扑器件中,拓扑模式及其带宽可由动态相位、几何相位和波长共同控制,应用前景广阔。
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