Bi-functional metasurface for broadband absorption and broadband cross-polarization conversion based on vanadium dioxide

被引:27
作者
Zhang, Yue [1 ]
Xue, Wenrui [1 ]
Du, Yida [1 ]
Liang, Jinglin [1 ]
Li, Changyong [1 ,2 ,3 ]
机构
[1] Shanxi Univ, Coll Phys & Elect Engn, Taiyuan 030006, Peoples R China
[2] Shanxi Univ, Inst Laser Spect, State Key Lab Quantum Opt & Quantum Opt Devices, Taiyuan 030006, Peoples R China
[3] Shanxi Univ, Collaborat Innovat Ctr Extreme Opt, Taiyuan 030006, Peoples R China
关键词
Metasurface; Absorption; Polarization conversion; Vanadium dioxide; Terahertz; METAMATERIAL; TRANSITION; ABSORBER;
D O I
10.1016/j.optmat.2024.114984
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A bi-functional metasurface with switchable absorption and cross-polarization conversion in the terahertz band is proposed by using phase change material vanadium dioxide (VO2). When VO2 exhibits metallic property, the proposed metasurface acts as a broadband absorber. Simulation results show that the absorption rate of the absorber is greater than 90 % in the range of 1.485-3.575 THz, and the relative bandwidth is 82.6 %. The absorption efficiency can maintain above 90 % when the incident angle is less than 60 degrees for TM wave. Due to the symmetry of the designed structure, the absorber is insensitive to the polarization angle. When VO2 exhibits insulating property, the proposed metasurface behaves as a broadband cross-polarization converter. Simulation results show that the polarization conversion ratio of the polarization converter exceeds 0.9 in the range of 1.1-3.2 THz, and the relative bandwidth is 97.7 %. Nearly 100 % cross-polarization conversion can be achieved at 1.51 THz, 2.356 THz and 3.1 THz. The proposed metasurface features high efficiency, wide-angle and broad bandwidth advantages, which has potential application value in imaging, stealth technology, radar detection and other fields.
引用
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页数:10
相关论文
共 40 条
[11]   Broadband cross-polarization conversion metasurface based on cross-shaped resonators [J].
Liu, Zhaomei ;
Zhao, Bei ;
Jiao, Chunhong ;
Zhao, Lihua ;
Han, Xingxing .
APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2021, 127 (11)
[12]   Dual function tunable THz metamaterial device possessing broadband absorption and polarization conversion [J].
Ma, Mengting ;
Lian, Xuejun ;
Tian, Jinping ;
Yang, Rongcao .
AEU-INTERNATIONAL JOURNAL OF ELECTRONICS AND COMMUNICATIONS, 2023, 163
[13]   Optically Monitored Electrical Switching in VO2 [J].
Markov, Petr ;
Marvel, Robert E. ;
Conley, Hiram J. ;
Miller, Kevin J. ;
Haglund, Richard F., Jr. ;
Weiss, Sharon M. .
ACS PHOTONICS, 2015, 2 (08) :1175-1182
[14]   Mid-infrared Plasmonic Resonances in 2D VO2 Nanosquare Arrays [J].
Matsui, Hiroaki ;
Ho, Ya-Lun ;
Kanki, Teruo ;
Tanaka, Hidekazu ;
Delaunay, Jean-Jacques ;
Tabata, Hitoshi .
ADVANCED OPTICAL MATERIALS, 2015, 3 (12) :1759-1767
[15]  
Nagini K.B., 2023, Mater. Today Pro., V94, P24
[16]   Switchable bi-functional metamaterial based on vanadium dioxide for broadband absorption and broadband polarization in terahertz band [J].
Niu, Junhao ;
Yao, Qianyu ;
Mo, Wei ;
Li, Chunhui ;
Zhu, Aijun .
OPTICS COMMUNICATIONS, 2023, 527
[17]   Methodology for the design of a multi-functional device with switchable absorption and polarization conversion modes by graphene and metallic metasurfaces [J].
Peng, Lin ;
Li, Xiao-feng ;
Gao, Xi ;
Jiang, Xing ;
Li, Si-min .
OPTICAL MATERIALS EXPRESS, 2019, 9 (02) :687-705
[18]   Broadband absorption and polarization conversion switchable terahertz metamaterial device based on vanadium dioxide [J].
Peng, Zhen ;
Zheng, Zesong ;
Yu, Zhisheng ;
Lan, Huiting ;
Zhang, Min ;
Wang, Shixing ;
Li, Ling ;
Liang, Huawei ;
Su, Hong .
OPTICS AND LASER TECHNOLOGY, 2023, 157
[19]   Electrical triggering of metal-insulator transition in nanoscale vanadium oxide junctions [J].
Ruzmetov, Dmitry ;
Gopalakrishnan, Gokul ;
Deng, Jiangdong ;
Narayanamurti, Venkatesh ;
Ramanathan, Shriram .
JOURNAL OF APPLIED PHYSICS, 2009, 106 (08)
[20]   Achieving broadband absorption and polarization conversion with a vanadium dioxide metasurface in the same terahertz frequencies [J].
Song, Zhengyong ;
Zhang, Jiahe .
OPTICS EXPRESS, 2020, 28 (08) :12487-12497