Multi-channel perfect absorber based on a one-dimensional topological photonic crystal heterostructure with graphene

The topological edge mode, which exists at the interface of a one-dimensional (1D) topological photonic crystal (PhC) heterostructure, provides the possibility to realize perfect absorption for its strong field localization effects. In this Letter, it is found that a huge absorption enhancement appe...

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Veröffentlicht in:Optics letters 2018-09, Vol.43 (17), p.4256-4259
Hauptverfasser: Wang, Xi, Liang, Yanzhao, Wu, Leiming, Guo, Jun, Dai, Xiaoyu, Xiang, Yuanjiang
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container_end_page 4259
container_issue 17
container_start_page 4256
container_title Optics letters
container_volume 43
creator Wang, Xi
Liang, Yanzhao
Wu, Leiming
Guo, Jun
Dai, Xiaoyu
Xiang, Yuanjiang
description The topological edge mode, which exists at the interface of a one-dimensional (1D) topological photonic crystal (PhC) heterostructure, provides the possibility to realize perfect absorption for its strong field localization effects. In this Letter, it is found that a huge absorption enhancement appears because of the excitation of topological edge mode, while the graphene is sandwiched between two 1D PhCs. The single peak perfect absorption is realized by means of the strong coupling of incident light and Tamm plasmon polaritons (TPPs) which is excited with Ag-PhC structure. Moreover, we use a heterostructure constructed by two PhCs, a monolayer graphene and Ag mirror to theoretically demonstrate that multi-channel perfect absorption can be achieved based on the effect of topological edge mode, TPPs and critical coupling. The angular selectivity of the proposed absorber is also investigated. Both of the absorption peaks are extremely narrow, and the absorption can be maintained more than 97% with the incident angle varying from 0° to 50°. Hence, our results may have potential applications in optical switches, thermal emissions, and narrowband selective filters.
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source OSA_美国光学学会数据库1
subjects Absorbers
Absorption
Coupling
Graphene
Heterostructures
Incident light
Narrowband
Photonic crystals
Polaritons
Silver
Switches
title Multi-channel perfect absorber based on a one-dimensional topological photonic crystal heterostructure with graphene
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