Independently tunable multi-band terahertz absorber based on graphene sheet and nanoribbons

Author:

Cheng Rong1ORCID,Zhou Yuxiu12ORCID,Liu Jianqiang2,Hu Shuai2,Liu Hongfei3,Pan Jisi1,Huang Weiming1,He Xiaolian1,Liang Beirong1,Zhang Libang1

Affiliation:

1. Guangxi Science & Technology Normal University

2. Jiujiang University

3. Nanchang University

Abstract

A multi-band terahertz (THz) absorber based on graphene sheet and nanoribbons is proposed and investigated. In the studied frequency range, five absorption peaks are observed, with four originate from lateral Fabry-Perot resonance (LFPR) and one originates from guided-mode resonance (GMR). The LFPR and GMR peaks behave differently when geometric parameters are adjusted, which makes independent tuning possible. When period increases, the GMR peak red shifts and the frequencies of LFPR peaks remain almost unchanged. On the contrary, as nanoribbon width increases, the frequency of GMR remains almost unchanged while that of LFPRs decrease significantly. With increasing top dielectric layer thickness, the LFPR peaks blue shift while the GMR peak red shifts. In addition, the absorber has the merit of multi-band high absorptivity and frequency stability under large angle oblique incidence. The proposed terahertz absorber may benefit the areas of medical imaging, sensing, non-destructive testing, THz communications and other applications.

Funder

National Natural Science Foundation of China

Project for Distinguished Young Scholars of Jiangxi Province

Natural Science Foundation of Jiangxi Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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