Electrically Tunable Metasurface Reflector based on Graphene-Metal Plasmon Interactions on a Silver Grating

被引:0
|
作者
Kim, Youngsoo [1 ]
Yu, Sanghyeok [1 ]
Lee, Young Jin [1 ]
Hong, Seung Hyeon [1 ]
Kwon, Soon-Hong [1 ]
机构
[1] Chung Ang Univ, Dept Phys, 84 Heukseok Ro, Seoul, South Korea
关键词
Graphene; Tunable metasurface; Graphene-plasmon interaction; Numerical modeling; MODULATION;
D O I
10.1007/s11468-024-02703-9
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We propose a tunable metasurface reflector that integrates a passive metasurface with graphene-a two-dimensional material-to enhance reflectance modulation efficiency under an external voltage. The device comprised a silver substrate with etched air grooves, an aluminium oxide spacer layer, and a single graphene layer. The metasurface was designed to intensify light-matter interactions, increasing the modulation efficiency of graphene. Two passive metamaterials, differing in meta-atom size, were investigated. Smaller meta-atoms produced a narrower reflective notch, whereas larger meta-atoms enhanced the modulation efficiency of graphene. The rectangular periodic silver plates and graphene layer were optimized for operation at a 1550 nm wavelength. The reflectance of the open-hole mirror, composed of graphene and the spacer, can be electrically modulated by biasing the graphene. The optical conductivity of graphene was modeled using the local random phase approximation, with its Fermi level directly proportional to the applied voltage bias. This tunable metasurface reflector provides a straightforward and effective method for controlling light-matter interactions, with potential applications in optical devices, such as filters, sensors, and modulators.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Graphene-metal based tunable radiative metasurface for information encryption and anticounterfeiting
    Wang, Pei
    Su, Jinchao
    Ding, Pei
    Mao, Bo
    Ren, Mengshuai
    Xu, Kun
    Tian, Shuo
    Li, Yan
    Tian, Ximin
    Wang, Junqiao
    DIAMOND AND RELATED MATERIALS, 2023, 131
  • [2] A tunable versatile metasurface in terahertz frequency based on graphene-metal hybrid structures
    Zhang, Yin
    Zhu, Wenjing
    Zhang, Wanghui
    Zhao, Junming
    DIAMOND AND RELATED MATERIALS, 2024, 148
  • [3] Tunable broadband terahertz polarizer using graphene-metal hybrid metasurface
    Meng, K.
    Park, S. J.
    Li, L. H.
    Bacon, D. R.
    Chen, L.
    Chae, K.
    Park, J. Y.
    Burnett, A. D.
    Linfield, E. H.
    Davies, A. G.
    Cunningham, J. E.
    OPTICS EXPRESS, 2019, 27 (23): : 33769 - 33779
  • [4] Graphene-based tunable reflector superstructure grating
    Shobhit K. Patel
    Mayurkumar Ladumor
    Juveriya Parmar
    Tianjing Guo
    Applied Physics A, 2019, 125
  • [5] Graphene-based tunable reflector superstructure grating
    Patel, Shobhit K.
    Ladumor, Mayurkumar
    Parmar, Juveriya
    Guo, Tianjing
    APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2019, 125 (08):
  • [6] Generation of tunable double Fano resonances by plasmon hybridization in graphene-metal metamaterial
    Yan, Zhendong
    Qian, Lina
    Zhan, Peng
    Wang, Zhenlin
    APPLIED PHYSICS EXPRESS, 2018, 11 (07)
  • [7] Ultra-broadband terahertz bandpass filter with dynamically tunable attenuation based on a graphene-metal hybrid metasurface
    Huang, Wenli
    Luo, Xiaoqing
    Lu, Yuanfu
    Hu, Fangrong
    Li, Guangyuan
    APPLIED OPTICS, 2021, 60 (22) : 6366 - 6370
  • [8] Hybrid Metal Graphene-Based Tunable Plasmon-Induced Transparency in Terahertz Metasurface
    Wang, Xianjun
    Meng, Hongyun
    Deng, Shuying
    Lao, Chaode
    Wei, Zhongchao
    Wang, Faqiang
    Tan, Chunhua
    Huang, Xuguang
    NANOMATERIALS, 2019, 9 (03):
  • [9] Tunable toroidal resonance based on hybrid graphene-metal metasurfaces
    Chen, Ting
    Xiang, Tianyu
    Wang, Jianwei
    Xu, Mingxing
    Lei, Tao
    JOURNAL OF APPLIED PHYSICS, 2022, 132 (16)
  • [10] Electrically Tunable Gap Surface Plasmon-based Metasurface for Visible Light
    Guo, Jingjing
    Tu, Yan
    Yang, Lanlan
    Zhang, Ruiwen
    Wang, Lili
    Wang, Baoping
    SCIENTIFIC REPORTS, 2017, 7