Topological Photonic Chiral Mode Converters

Author:

Zhang Hongyu1,Wang Xiaoxiao23,Qi Huixin2,Wang Zhihao1,Hu Xiaoyong23456,Lu Cuicui1ORCID

Affiliation:

1. Key Laboratory of Advanced Optoelectronic Quantum Architecture and Measurements of Ministry of Education, Beijing Key Laboratory of Nanophotonics and Ultrafine Optoelectronic Systems, School of Physics Beijing Institute of Technology Beijing 100081 China

2. State Key Laboratory for Mesoscopic Physics & Department of Physics, Collaborative Innovation Center of Quantum Matter & Frontiers Science Center for Nano‐optoelectronics Peking University Beijing 100871 China

3. Beijing Academy of Quantum Information Sciences Beijing 100193 China

4. Peking University Yangtze Delta Institute of Optoelectronics Nantong Jiangsu 226010 China

5. Collaborative Innovation Center of Extreme Optics Shanxi University Taiyuan Shanxi 030006 China

6. Hefei National Laboratory Hefei 230088 China

Abstract

AbstractTopological photonic states are immune to structural defects and perturbations, which are considered as a promising solution for realizing robust integrated optical devices. As an essential photonic component, the chiral mode converter, which can directionally switch the modes of photonic states, plays a key role in integrated photonics. However, there is no way to realize topological photonic chiral mode converters. Here, a method is proposed to realize topological photonic chiral mode converters by dynamically encircling exceptional points in topological photonic systems. The device can directionally switch modes of topological photonic states and endow the mode converter with topology protection. Chiral dynamic behavior emerges between the two topological states due to the nonadiabatic transitions within the non‐Hermitian topological photonic system. The topological photonic chiral mode converter is robust against random perturbations of coupling strengths. The realization of a topological chiral mode converter endows topology protection into traditional photonic devices and will promote the practical applications of topological photonic states, such as mode multiplexers and optical isolators.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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