4.6 Article

Multi-band multi-tunable perfect plasmon absorber based on L-shaped and double-elliptical graphene stacks

期刊

DIAMOND AND RELATED MATERIALS
卷 115, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.diamond.2021.108374

关键词

Graphene; Absorbing device; Polarization insensitive; Multi-tunable; FDTD solution

资金

  1. National Natural Science Foundation of China [51606158, 11604311, 61705204, 21506257]
  2. Scientific Research Fund of Si Chuan Provincial Science and Technology Department [2020YJ0137, 2020YFG0467]
  3. Open Fund of The Key Laboratory for Metallurgical Equipment and Control Technology of Ministry of Education in Wuhan University of Science and Technology [MECOF2020B02]
  4. Southwest University of Science and Technology Students Innovation and entrepreneurship training program project [S202010619020, S202010619001S]
  5. Southwest University of Science and Technology Undergraduate Innovation Fund project [CX20-033]
  6. Southwest University of Science and Technology, School of Science innovation Fund project [LX2020007]
  7. Science and Technology Foundation of Wenzhou City [Y20170218]

向作者/读者索取更多资源

This paper proposes a multi-band multi-tunable graphene absorber structure, which can dynamically adjust the resonant wavelength of the absorber and maintain good absorption performance in various modes by controlling the Fermi level or geometric parameters.
In this paper, a multi-band multi-tunable graphene absorber structure is proposed. The absorber is made by + intersecting double-ellipse graphene, L-shaped graphene layer, medium layer, the metal layer, and Si substrate. By using this structure, we investigated the possibility of graphene surface plasmon resonance in the incident far-infrared wave and THz wave range. For this structure, we use the FDTD Solution of finite time domain difference software to conduct theoretical research on it. The results show that the absorbing device in the range of the infrared in lambda(1) = 10.78 mu m, lambda(2) = 12.20 mu m and lambda(3) = 21.74 mu m show perfect absorption peak of absorption rate is as high as 99.97%, 99.81% and 99.91%, respectively. By controlling the Fermi level or the geometric parameters of the graphene layer can dynamically adjust the resonant wavelength of absorbing device, and polarization insensitivity characteristics. And in TE or TM mode, it can maintain good absorption performance in a wide range of 0 degrees similar to 60 degrees. We believe that our research results will open new doors for the use of metamaterial absorbers with multi-band, multi-tunable, polarization-independent and insensitive to large-angle oblique incidence. In the future, it can be used in photoelectric detection, photovoltaic cells, photoelectric sensors, photoelectric thermal radiation and other fields.

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