Chen Yuntian

·Paper Publications

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Strong hybridization of edge and bulk states in dimerized PT-symmetric coupled waveguide chain
Release time:2021-09-02  Hits:

Indexed by: Journal paper

Journal: Optics Express

Affiliation of Author(s): 光电学院,国家光电研究中心

Place of Publication: 美国

Discipline: Engineering

Funded by: 自然科学基金

Document Type: J

Volume: 25

Issue: 2

Page Number: 1040-1049

Key Words:

DOI number: 10.1364/OE.25.001040

Date of Publication: 2017-03-30

Teaching and Research Group: c716

Abstract: We study mode coupling of an edge state with bulk states in a coupled waveguide chain in the presence of gain and losses. In a low non-Hermiticity regime, it is found that the edge state associated with the interface between two topologically different waveguide chains is well isolated from the bulk states, sharing the exact same features as the well-known Su-Schrieffer-Heeger Model. As the non-Hermiticity increases, the two bands of the overall waveguide chain merge together, which leads to the overlap in the band diagram between the edge state and states of lower bands. We find that before the PT-symmetry breaking, the edge state is strongly coupled to bulk states of lower bands, evident by the anti-crossing feature in the band diagram. The strong mode hybridization is verified by a non-Hermitian coupled mode theory developed from reaction conservation, and is further examined using phenomenological models. We envisage that the strong coupling between the edge state and the bulk state may be useful in expanding our understanding in topological photonics in non-Hermitian condition, as well as in applications such as mode conversion between edge and bulk states.

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Links to published journals: https://doi.org/10.1364/OE.25.001040