Plasmon-induced transparency in a reconfigurable composite valley photonic crystal

Author:

Liu Yang1,Wang Jiayi1,Yang Donghao1,Wang Yu1,Zhang Xinyuan1,Hassan Faheem1,Li Yigang1,Zhang Xinzheng12ORCID,Xu Jingjun1

Affiliation:

1. Nankai University

2. Shanxi University

Abstract

We propose a new kind of reconfigurable topological valley photonic crystal (TVPC), and a novel topological waveguide can be formed by constructing a domain wall between two TVPCs with opposite valley-Chern indices. The topological waveguide mode in the composite TVPC has large group refractive index. A topologically protected coupled waveguide cavity system is then designed by introducing a hexagonal ring cavity at the center of the straight domain wall of a combined TVPC, in which a narrow plasmon induced transparency window rises at 3.8848 GHz with a Q-factor of 1387 and a maximum group refractive index as high as 186. We propose a notch filter with a resonant frequency of 3.8852 GHz and a very high Q-factor of 10224. By changing the refractive index of liquid crystals via an external voltage applied between two parallel metal plates, the filter can be switched between band-pass and band-stop based on the reconfigurable topological interface state.

Funder

Program for Changjiang Scholars and Innovative Research Team in University

111 Project

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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