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Tunable anisotropic plasmon response of monolayer GeSe nanoribbon arrays

Authors :
Xiangai Cheng
Weibao He
Xin Zheng
Zhongjie Xu
Renyan Zhang
Yizhen Sui
Xiaoming Yuan
Junhu Zhou
Hao Ouyang
Chenxi Zhang
Haitao Chen
Source :
Nanoscale. 12:16762-16769
Publication Year :
2020
Publisher :
Royal Society of Chemistry (RSC), 2020.

Abstract

Recently, emerging two-dimensional (2D) germanium selenide (GeSe) has drawn lots of attention due to its in-plane anisotropic properties and great potential for optoelectronic applications such as in solar cells. However, methods are still sought to enhance its interaction with light to enable practical applications. Herein, we numerically investigate the localized plasmon response of monolayer GeSe nanoribbon arrays systematically, and the results show that localized surface plasmon polaritons in the far-infrared range with anisotropic behavior can be efficiently excited to enhance the light-matter interaction. We further show that the plasmon response of monolayer GeSe nanoribbons could be tuned effectively through the nanoribbon width, local refractive index, substrate thickness and carrier concentration, pointing out the ways for controlling the localized plasmon response. In the case of monolayer GeSe nanoribbons on a substrate of finite thickness, a Fabry-Pérot-like (FP-like) quantitative model has been proposed to explain the overall spectral response originating from overlapped FP and plasmon modes, and it matches well with the simulation results. All in all, we investigate the plasmon response of the novel 2D GeSe nanoribbons thoroughly for the first time, bringing opportunities for potential applications of novel polarization-dependent optoelectronic devices.

Details

ISSN :
20403372 and 20403364
Volume :
12
Database :
OpenAIRE
Journal :
Nanoscale
Accession number :
edsair.doi.dedup.....e90c99d781d1d8ad25597c255e17d0ed
Full Text :
https://doi.org/10.1039/d0nr02047h