Excitation of tunable dual quasi-bound states in the continuum in graphene metasurface and terahertz sensing application

Author:

Huang Zhong1,Chen Qing1,Cao Xiaoxiao1,Ding Ji1,Tang Chaojun2,Yan Zhendong3,Chen Jing4

Affiliation:

1. Jiangsu Second Normal University

2. Zhejiang University of Technology

3. Nanjing Forestry University

4. Nanjing University of Posts and Telecommunications

Abstract

Abstract This study proposes an all-graphene metasurface supporting dual band symmetric bound state in the continuum (BIC) in the terahertz (THz) range for the first time. The structure consists of a unit cell containing a double-gap split ring resonator periodically on a dielectric substrate. By introducing symmetry breaking, two plasmonic quasi-BICs (Q-BICs) transmission dips are observed with finite Q-factors and high modulation depth. Simulation and analysis results simultaneously exhibit that the Q-factors of Q-BICs follow an inverse square dependency with the asymmetry degree. Via changing the graphene’s chemical potential, the Q-BICs’ operating frequency range can be actively expanded. The dual Q-BICs are immune to the variation of incident angle and has a significant slow light effect with time delay up to 23.8 ps. In addition, the sensing performance in THz region is investigated. A maximum sensitivity of 267.5 GHz/RIU is obtained with a FOM of 24.08 RIU− 1. Our work shows an alternative way to design the class of tunable Q-BIC metasurface, which will provide a valuable reference for future dynamic sensor and other fields.

Publisher

Research Square Platform LLC

Reference32 articles.

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