Tunable multichannel THz perfect absorption using graphene-based Fabry Perot resonator

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作者
Hongfei Liu
Pingsheng Zhang
Yuxiu Zhou
Xin-Hua Deng
Jiren Yuan
机构
[1] Nanchang University,Department of Physics
[2] Tongji University,School of Physics Science and Engineering
[3] Guangxi Science and Technology Normal University,School of Mechanical and Electrical Engineering
[4] Jiujiang University,School of Science, Jiangxi Province Key Laboratory of Microstructure Functional Materials
[5] Wuhan University of Technology,State Key Laboratory of Advanced Technology for Materials Synthesis and Processing
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关键词
Graphene-based Fabry Perot resonance; Multichannel perfect THz absorber; Metamaterials;
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摘要
The ability to enhance and manipulate light absorption is critical in many applications of optoelectronic devices. In order to achieve this purpose in the THz region, we design a THz absorber made up of graphene-based Fabry Perot resonator. We demonstrate that the proposed structure achieves multichannel perfect absorption because of Fabry Perot resonance leading to strong localization of light field. The absorber is polarization-insensitive and exhibits tolerance in a wide range of incident angles for both TE and TM waves. The number of absorption bands can be controlled by appropriately setting the thickness of the dielectric spacer between the graphene and the metal reflector. Moreover, the absorber is stable to the magnetic field, left-handed circularly polarized light, right-handed circularly polarized light and environment refractive index. This work may promote the development and applications in optoelectronic devices such as sensors, photodetectors and absorbers.
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