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基于棱镜耦合中波长不敏感相位匹配的超宽带石墨烯完美吸收体。

Graphene perfect absorber of ultra-wide bandwidth based on wavelength-insensitive phase matching in prism coupling.

作者信息

Lee Sangjun, Heo Hyungjun, Kim Sangin

机构信息

Department of Electrical and Computer Engineering, Ajou University, Suwon, South Korea.

出版信息

Sci Rep. 2019 Aug 19;9(1):11967. doi: 10.1038/s41598-019-48501-w.

Abstract

We proposed perfect absorbers of ultra-wide bandwidths based on prism coupling with wavelength-insensitive phase matching, which consists of three dielectric layers (Prism-Cavity-Air) with monolayer graphene embedded in the cavity layer. Due to inherent material dispersion of the dielectric layers, with the proper choice of the incidence angle and the cavity thickness, the proposed perfect absorbers can satisfy the phase matching condition over a wide wavelength range, inducing enormous enhancement of the absorption bandwidth. The requirement on the material dispersions of the prism and the cavity layer for the wavelength-insensitive phase matching over a wavelength range of the interest has been derived, and it has been demonstrated that the various kinds of materials can meet the requirement. Our theoretical investigation with the transfer matrix method (TMM) has revealed that a 99% absorption bandwidth of ~300 nm with perfect absorption at λ  = 1.51 μm can be achieved when BK7 and PDMS are used as the prism and the cavity layer, respectively, which is ~7 times wider than the conceptual design based on the non-dispersive materials. The full width at half maximum of our designed perfect absorber is larger than 1.5 μm.

摘要

我们提出了基于具有波长不敏感相位匹配的棱镜耦合的超宽带完美吸收体,它由三个介电层(棱镜 - 腔 - 空气)组成,在腔层中嵌入了单层石墨烯。由于介电层固有的材料色散,通过适当选择入射角和腔厚度,所提出的完美吸收体可以在很宽的波长范围内满足相位匹配条件,从而极大地扩展吸收带宽。推导了在感兴趣的波长范围内实现波长不敏感相位匹配对棱镜和腔层材料色散的要求,并证明了各种材料都能满足该要求。我们使用转移矩阵法(TMM)进行的理论研究表明,当分别使用BK7和PDMS作为棱镜和腔层时,可实现约300 nm的99%吸收带宽,在λ = 1.51μm处实现完美吸收,这比基于非色散材料的概念设计宽约7倍。我们设计的完美吸收体的半高宽大于1.5μm。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6cd/6700108/f3bc3bd6d7db/41598_2019_48501_Fig1_HTML.jpg

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