Multiple-band reflective polarization converter using U-shaped metamaterial

被引:94
|
作者
Huang, Xiaojun [1 ,2 ]
Yang, Dong [3 ]
Yang, Helin [1 ]
机构
[1] Cent China Normal Univ, Coll Phys Sci & Technol, Wuhan 430079, Peoples R China
[2] Kashgar Teachers Coll, Dept Phys, Kashgar 844000, Peoples R China
[3] Hubei Normal Univ, Coll Phys & Elect Sci, Huangshi 435002, Peoples R China
关键词
D O I
10.1063/1.4868076
中图分类号
O59 [应用物理学];
学科分类号
摘要
A multiple-band metamaterial reflective polarization converter (RPC) is proposed, which is composed of the dielectric substrate sandwiched with U-shaped metallic patterns and continuous metal film. The proposed U-shaped metamaterial RPC (UMM-RPC) can convert a linearly polarized wave to its cross polarized wave at the three resonant frequencies, which also can convert the linearly polarized wave to circularly polarized wave at other three resonant frequencies. Furthermore, the proposed UMM-RPC can maintain the same conversional direction at the three resonant frequencies when incident on a circularly polarized wave. The simulated and measured results are in agreement in the entire frequency range, and the polarization conversion ratio is over 90% for both linear and circular polarizations. The surface current distributions of the UMM-RPC are discussed to look into the physical mechanism. The proposed UMM-RPC has simple geometry but more operating frequency bands compared to the previous designs and can be used in applications such as antenna radome, remote sensors, and radiometer. (C) 2014 AIP Publishing LLC.
引用
收藏
页数:6
相关论文
共 50 条
  • [11] A tunable reflective polarization converter based on hybrid metamaterial
    Xiao, Zhongyin
    Zou, Huanling
    Zheng, Xiaoxia
    Ling, Xinyan
    Wang, Lei
    OPTICAL AND QUANTUM ELECTRONICS, 2017, 49 (12)
  • [12] Reflective metamaterial polarization converter in a broad frequency range
    H. Y. Zheng
    Y. J. Yoo
    Y. J. Kim
    Y. P. Lee
    J. H. Kang
    K. W. Kim
    S. A. Nikitov
    Journal of the Korean Physical Society, 2014, 64 : 822 - 825
  • [13] Reflective metamaterial polarization converter in a broad frequency range
    Zheng, H. Y.
    Yoo, Y. J.
    Kim, Y. J.
    Lee, Y. P.
    Kang, J. H.
    Kim, K. W.
    Nikitov, S. A.
    JOURNAL OF THE KOREAN PHYSICAL SOCIETY, 2014, 64 (06) : 822 - 825
  • [14] Multiple-Band Terahertz Metamaterial Absorber Using Multiple Separated Sections of Metallic Rectangular Patch
    Wang, Ben-Xin
    He, Yuanhao
    Lou, Pengcheng
    Xu, Nianxi
    Wang, Xiaoyi
    Wang, Yanchao
    Cao, Jianjun
    FRONTIERS IN PHYSICS, 2020, 8
  • [15] Construction of a chiral metamaterial with a U-shaped resonator assembly
    Xiong, Xiang
    Sun, Wei-Hua
    Bao, Yong-Jun
    Wang, Mu
    Peng, Ru-Wen
    Sun, Cheng
    Lu, Xiang
    Shao, Jun
    Li, Zhi-Feng
    Ming, Nai-Ben
    PHYSICAL REVIEW B, 2010, 81 (07):
  • [16] Experimental verification of a high performed multiple-band metamaterial absorber
    Zhang, Zhenya
    Wang, Saisai
    INFRARED PHYSICS & TECHNOLOGY, 2017, 82 : 126 - 132
  • [17] Dual-band asymmetric transmission of chiral metamaterial based on complementary U-shaped structure
    Dejun Liu
    Zhongyin Xiao
    Xiaolong Ma
    Lei Wang
    Kaikai Xu
    Jingyao Tang
    Zihua Wang
    Applied Physics A, 2015, 118 : 787 - 791
  • [18] Mutual Coupling Reduction Between Closely Placed Patch Antennas Using Complementary U-Shaped Polarization Converter
    Odabasi, Hayrettin
    Salimitorkamani, Mahdi
    Turan, Goksel
    IEEE ANTENNAS AND WIRELESS PROPAGATION LETTERS, 2023, 22 (11): : 2710 - 2714
  • [19] Dual-band asymmetric transmission of chiral metamaterial based on complementary U-shaped structure
    Liu, Dejun
    Xiao, Zhongyin
    Ma, Xiaolong
    Wang, Lei
    Xu, Kaikai
    Tang, Jingyao
    Wang, Zihua
    APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2015, 118 (03): : 787 - 791
  • [20] Ultra-broadband Reflective Polarization Converter Using Ring-chain Metamaterial
    Zheng, Xiao-Xia
    Xiao, Zhong-Yin
    Ling, Xin-Yan
    Xu, Kai-Kai
    Tang, Jing-Yao
    2016 PROGRESS IN ELECTROMAGNETICS RESEARCH SYMPOSIUM (PIERS), 2016, : 1426 - 1429