Controllable Goos-Hänchen Shift in Photonic Crystal Heterostructure Containing Anisotropic Graphene

Author:

Tian Haishan12,Wang Huabing1,Zhang Jingke1,Sun Gang2

Affiliation:

1. State Key Laboratory of Complex Electromagnetic Environment Effects on Electronics and Information System (CEMEE), Luoyang 471003, China

2. School of Physics and Electronics, Hunan Normal University, Changsha 410081, China

Abstract

In this study, we investigate the electrically and magnetically tunable Goos–Hänchen (GH) shift of a reflected light beam at terahertz frequencies. Our study focuses on a photonic crystal heterostructure incorporating a monolayer anisotropic graphene. We observe a tunable and enhanced GH shift facilitated by a drastic change in the reflected phase at the resonance angle owing to the excitation of the topological edge state. Considering the quantum response of graphene, we demonstrate the ability to switch positive and negative GH shifts through the manipulation of graphene’s conductivity properties. Moreover, we show that the GH shift can be actively tuned by the external electric field and magnetic field, as well as by controlling the structural parameters of the system. We believe that this tunable and enhanced GH shift scheme offers excellent potential for preparing terahertz shift devices.

Funder

China State Key Laboratory of Complex Electromagnetic Environment Effects on Electronic and Information System

Hunan Provincial Natural Science Foundation of China

Publisher

MDPI AG

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