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Graphene perfect absorber with loss adaptive Q-factor control function enabled by quasi-bound states in the continuumoa mark
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Publication Year
2021-12-01
Publisher
Nature Research
Citation
Scientific Reports, Vol.11
All Science Classification Codes (ASJC)
Multidisciplinary
Abstract
Numerous device structures have been proposed for perfect absorption in monolayer graphene under single-sided illumination, all of which requires the critical coupling condition, i.e., the balance between the loss of graphene and the leakage rate of the device. However, due to the difficulty of the precise control of the quality of synthesized graphene and unwanted doping in graphene transferred to the substrate, the loss of graphene is rather unpredictable, so that the perfect absorption is quite difficult to achieve in practice. To solve this problem, we designed a novel perfect absorber structure with a loss adaptive leakage rate control function enabled by the quasi-bound states in the continuum (BIC) and numerically demonstrated its performance. Our designed device is based on a slab-waveguide grating supporting both the quasi-BIC and the guided-mode resonance (GMR); the quasi-BIC with an adjustable leakage rate controlled by an incident angle is responsible for absorption, while the GMR works as an internal mirror. Since the proposed device scheme can have an arbitrarily small leakage rate, it can be used to implement a perfect absorber for any kind of ultrathin absorbing media. Due to the simple structure avoiding an external reflector, the device is easy to fabricate.
ISSN
2045-2322
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/32395
DOI
https://doi.org/10.1038/s41598-021-02318-8
Fulltext

Type
Article
Funding
This work was supported by the National Research Foundation of Korea (2020R1A2B5B01002681, 2021R1A4A1033155).
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Kim, Sangin김상인
Department of Intelligence Semiconductor Engineering
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