• Infrared and Laser Engineering
  • Vol. 51, Issue 6, 20210648 (2022)
Xianrui Meng1、2, Ming Zhang1、2, Yupeng Xi1、2, Ruzhi Wang1、2, Changhao Wang1、2, and Bo Wang1、2
Author Affiliations
  • 1Institute of Advanced Energy Materials and Devices, Faculty of Materials and Manufacturing, Beijing University of Technology, Beijing 100124, China
  • 2Key Laboratory of Advanced Functional Materials, Ministry of Education, Faculty of Materials and Manufacturing, Beijing University of Technology, Beijing 100124, China
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    DOI: 10.3788/IRLA20210648 Cite this Article
    Xianrui Meng, Ming Zhang, Yupeng Xi, Ruzhi Wang, Changhao Wang, Bo Wang. Wideband terahertz metamaterial absorber for composite graphene/silicon hemispheres[J]. Infrared and Laser Engineering, 2022, 51(6): 20210648 Copy Citation Text show less
    References

    [1] J F O’Hara, W Withayachumnankul, I Al-Naib. A review on thin-film sensing with terahertz waves. Journal of Infrared Millimeter & Terahertz Waves, 33, 245-291(2012).

    [2] Xinyuan Liu, Hanwen Zeng, Xi Tian, . Transmission simulation and safety analysis of terahertz radiation in skin. Optics and Precision Engineering, 29, 9(2021).

    [3] G Chen, X Lin, Z Wang. Enhanced reflective dichroism from periodic graphene ribbons via total internal reflection. Opt Express, 27, 22508-22521(2019).

    [4] X Kong, Z Wang, L Du, et al. Optically transparent metamirror with broadband chiral absorption in the microwave region. Opt Express, 27, 38029-38038(2019).

    [5] Hua Wang, Xiaohong Sun, Zhen Wang, . Characteristic analysis of metamaterial absorber in terahertz wavelength. Infrared and Laser Engineering, 45, 1225003(2016).

    [6] M R Forouzeshfard, S Ghafari, Z Vafapour. Solute concentration sensing in two aqueous solution using an optical metamaterial sensor. Journal of Luminescence, 230, 117734(2021).

    [7] J Xu, R-Q Li, X-P Jiang, . Ultra-wideband linear polarization converter based on square split ring. Acta Physica Sinica, 68, 117801(2019).

    [8] G Shen, M Zhang, Y Ji, et al. Broadband terahertz metamaterial absorber based on simple multi-ring structures. AIP Advances, 8, 075206(2018).

    [9] N I Landy. A perfect metamaterial absorber. Physical Review Letters, 100, 207402(2008).

    [10] M A Baqir, S A Naqvi. Electrically tunable terahertz metamaterial absorber comprised Cu/Graphene strips. Plasmonics, 15, 2205-2211(2020).

    [11] Xin Wang, Lining Sun, Yunbo Shi. Design and application of miniature multi-parameter water quality sensor chip. Optics and Precision Engineering, 28, 2215-2226(2020).

    [12] R Phon, S Lim. Design and analysis of active metamaterial modulated by RF power level. Sci Rep, 10, 8703(2020).

    [13] Quan Li, Shanshan Liu, Guangda Lu, . Active control of terahertz electromagnetically induced transparency metasurface using a graphene-metal hybrid structure. Infrared and Laser Engineering, 49, 20210246(2020).

    [14] R Zhong, L Yang, Z Liang, et al. Ultrawideband terahertz absorber with a graphene-loaded dielectric hemi-ellipsoid. Opt Express, 28, 28773-28781(2020).

    [15] A Andryieuski, A V Lavrinenko. Graphene metamaterials based tunable terahertz absorber: effective surface conductivity approach. Opt Express, 21, 9144-9155(2013).

    [16] Y Zhang, Y Feng, B Zhu, et al. Graphene based tunable metamaterial absorber and polarization modulation in terahertz frequency. Opt Express, 22, 22743-22752(2014).

    [17] Tun Cao, Kuan Li, Yang Li, . Tunable optical metamaterials and their applications. Chinese Optics, 14, 968-985(2021).

    [18] Xieyu Chen, Zhen Tian. Recent progress in terahertz dynamic modulation based on graphene.. Chinese Optics, 10, 86-97(2017).

    [19] E H Hwang, Sarma S Das. Dielectric function, screening, and plasmons in two-dimensional graphene. Physical Review B, 75, 205418(2007).

    [20] J Yang, Z Zhu, J Zhang, et al. Broadband terahertz absorber based on multi-band continuous plasmon resonances in geometrically gradient dielectric-loaded graphene plasmon structure. Sci Rep, 8, 3239(2018).

    [21] M Rahmanzadeh, H Rajabalipanah, A Abdolali. Multilayer graphene-based metasurfaces: Robust design method for extremely broadband, wide-angle, and polarization-insensitive terahertz absorbers. Appl Opt, 57, 959-968(2018).

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    Xianrui Meng, Ming Zhang, Yupeng Xi, Ruzhi Wang, Changhao Wang, Bo Wang. Wideband terahertz metamaterial absorber for composite graphene/silicon hemispheres[J]. Infrared and Laser Engineering, 2022, 51(6): 20210648
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