Terahertz absorber with switchable functionality from ultra-broadband to broadband

被引:6
|
作者
Wu, Guozheng
Li, Chao [1 ]
Wang, Dong
Chen, Wenya
Gao, Song
Guo, Haijun
Zhang, Chunwei
Guo, Shijing
机构
[1] Univ Jinan, Sch Informat Sci & Engn, Jinan 250022, Peoples R China
基金
中国国家自然科学基金;
关键词
Graphene; Ultra-broadband; Absorption mode switchable; Polarization; Insensitive; Vanadium dioxide; PERFECT ABSORBER; GRAPHENE; METAMATERIAL;
D O I
10.1016/j.diamond.2023.110306
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this paper, we present a terahertz absorber with switchable absorption modes by utilizing patterned graphene-vanadium dioxide. Through thermal tuning of vanadium dioxide and electrical control of graphene, our device demonstrates two distinct absorption modes that can be switched between. By maintaining the Fermi energy of graphene at 1 eV, the device achieved an ultra-broadband absorption with a bandwidth of 4.62 THz, spanning from 3.58 to 8.20 THz, when the conductivity of vanadium dioxide reached 200,000 S/m. Once the conductivity dropped to 200 S/m, we observed a narrower bandwidth of 0.95 THz (ranging from 6.58 to 7.53 THz) for the broadband absorption. At this stage, manipulating the Fermi energy of graphene allows for control over the amplitude and frequency shift of the broadband mode. Additionally, the device benefits from a remarkable degree of symmetry, which guarantees its insensitivity to changes in polarization angle. The impact of geometric parameters on the robustness of absorption characteristics is also discussed. The device may have potential applications in broadband mirror and electromagnetic shielding and so on.
引用
收藏
页数:9
相关论文
共 50 条
  • [21] Photocontrolled ultra-broadband metamaterial absorber around the terahertz regime
    Wu, Guozheng
    Li, Chao
    Wang, Dong
    Gao, Song
    Guo, Haijun
    Chen, Wenya
    Guo, Shijing
    Xiong, Jiaran
    Che, Yue
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2024, 26 (35) : 23144 - 23151
  • [22] A design of ultra-broadband metamaterial absorber
    Shi, Yan
    Li, Yuan Chang
    Hao, Tong
    Li, Long
    Liang, Chang-Hong
    WAVES IN RANDOM AND COMPLEX MEDIA, 2017, 27 (02) : 381 - 391
  • [23] Structural Optimization of Single-Layer Graphene Metamaterial for Ultra-Broadband Terahertz Absorber
    Ma, Qilin
    Hong, Weiyi
    Shui, Lingling
    IEEE PHOTONICS JOURNAL, 2021, 13 (05):
  • [24] Ultra-broadband terahertz absorber based on a multilayer graphene metamaterial
    Liu, Ling
    Liu, Wenwen
    Song, Zhengyong
    JOURNAL OF APPLIED PHYSICS, 2020, 128 (09)
  • [25] Thermally tunable vanadium-dioxide-based broadband metamaterial absorber with switchable functionality in the terahertz band
    Xu, Chongyang
    Duan, Guiyuan
    Xu, Wei
    Wang, Xingzhu
    Huang, Yang
    Zhang, Xiangyang
    Zhu, Huaxin
    Wang, Ben-Xin
    FUNCTIONAL COMPOSITES AND STRUCTURES, 2023, 5 (02):
  • [26] An ultra-broadband and lightweight fishnet-like absorber in microwave region
    Chen, Xiqiao
    Chen, Xin
    Wu, Zhuang
    Zhang, Zilong
    Wang, Zilin
    Heng, Liuyang
    Wang, Shuai
    Zou, Yanhong
    Tang, Zhixiang
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2018, 51 (28)
  • [27] Terahertz ultra-broadband and multi-frequency narrowband perfect absorber based on compound metamaterial
    Yang, Ruihan
    Liu, Zhimin
    Luo, Xin
    Ji, Cheng
    Yang, Guangxin
    Xie, Yadong
    MODERN PHYSICS LETTERS B, 2024, 38 (33):
  • [28] A simple design of ultra-broadband and polarization insensitive terahertz metamaterial absorber
    Ben-Xin Wang
    Ling-Ling Wang
    Gui-Zhen Wang
    Wei-Qing Huang
    Xiao-Fei Li
    Xiang Zhai
    Applied Physics A, 2014, 115 : 1187 - 1192
  • [29] Structural Optimization and Performance Analysis of a Tunable Ultra-Broadband Terahertz Absorber
    Hu, KeXiang
    Xu, SongTong
    Chen, Le
    Wang, PeiHua Yang
    Wen, ZhiHan
    Wang, QingKang
    PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE, 2022, 219 (12):
  • [30] Ultra-broadband vanadium dioxide absorber with dynamic modulation in the terahertz band
    Guo, Fumin
    Deng, Xin-Hua
    Qin, Kaipeng
    Zhang, Pingsheng
    Song, Yingming
    Xie, Huigen
    Yuan, Jiren
    OPTICS COMMUNICATIONS, 2024, 560