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Perfect Excitation of Topological States by Supersymmetric Waveguides

Xuanyu Liu, Zhiyuan Lin, Wange Song, Jiacheng Sun, Chunyu Huang, Shengjie Wu, Xingjian Xiao, Haoran Xin, Shining Zhu, Tao Li

2024Physical Review Letters12 citationsDOI

Abstract

Topological photonic states provide intriguing strategies for robust light manipulations, however, it remains challenging to perfectly excite these topological eigenstates due to their complicated mode profiles. In this work, we propose to realize the exact eigenmode of the topological edge states by supersymmetric (SUSY) structures. By adiabatically transforming the SUSY partner to its main topological structure, the edge modes can be perfectly excited with simple single-site input. We experimentally verify our strategy in integrated silicon waveguides in telecommunication wavelength, showing a broad working bandwidth. Moreover, a shortcut-to-adiabaticity strategy is further applied to speed up the adiabatic pump process by inverse-design approaches, thus enabling fast mode evolutions and leading to reduced device size. Our method is universal and beneficial to the topology-based or complex eigenmodes systems, ranging from photonics and microwaves to cold atoms and acoustics.

Topics & Concepts

PhysicsAdiabatic processTopology (electrical circuits)PhotonicsExcitationSupersymmetryEigenvalues and eigenvectorsMicrowaveExcited stateQuantum mechanicsMathematicsCombinatoricsTopological Materials and PhenomenaQuantum Mechanics and Non-Hermitian PhysicsMechanical and Optical Resonators