Linear-to-Circular Polarization Converter with Adjustable Bandwidth Realized by the Graphene Transmissive Metasurface

被引:0
作者
Xinlei Zhang
Haining Ye
Yan Zhao
Haifeng Zhang
机构
[1] Nanjing University of Posts and Telecommunications,College of Electronic and Optical Engineering & College of Microelectronics
来源
Plasmonics | 2022年 / 17卷
关键词
Tunable polarization converter; Adjustable bandwidth; Graphene;
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中图分类号
学科分类号
摘要
A tunable linear-to-circular polarization converter (LTCPC) for the terahertz (THz) regime which consists of two conductive layers and a graphene transmissive metasurface layer separated by two dielectric layers is reported in this work. The equivalent surface resistance modeling method is adopted to investigate the peculiar electronic properties of graphene. The simulation results show that when the Fermi energy (Ef) is 1.1 eV, the linearly-polarized wave can be transformed into the circularly-polarized wave in the working band ranging from 0.9498 to 1.3827 THz (the relative bandwidth is 37.1%) with axial ratio (AR) less than 3 dB. Moreover, the bandwidth can be regulated to the desired one by varying the Fermi level of graphene metasurface via a bias voltage rather than manually modifying the structure. We have analyzed the mechanism of the polarization conversion, especially, the magnitudes and the phase difference of cross- and co-polarization transmission coefficients, AR curves, and surface current diagrams at y-polarized incidence. Our findings open up promising possibilities towards the realization of graphene controllable devices for polarization modulation, which has advantages of adjustability over traditional devices.
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页码:1079 / 1089
页数:10
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  • [1] Kim D(2005)Performance uniformity analysis of a wire-grid polarizer in imaging polarimetry Appl Opt 44 5398-5402
  • [2] Lin B(2017)A linear-to-circular polarization converter based on a second-order band-pass frequency selective surface Appl Phys A 123 43-377
  • [3] Wu JL(2016)Metasurface superstrate antenna with wideband circular polarization for satellite communication application IEEE Antennas Wirel Propag Lett 15 374-472
  • [4] Da XY(2005)Designs of wide-view and broadband circular polarizers Opt Express 13 8318-1655
  • [5] Li W(2010)Tunable negative group index in metamaterial structures with large form birefringence Opt Express 18 463-792
  • [6] Ma JJ(2011)Asymmetric chiral metamaterial circular polarizer based on four U-shaped split ring resonators Opt Lett 36 1653-14623
  • [7] Zhao W(2004)Metamaterials and Negative Refractive Index Science 305 788-8726
  • [8] Long L(2015)Achieving wide-band linear-to-circular polarization conversion using ultra-thin bi-layered metasurfaces J Appl Phys 117 011129-8
  • [9] Li Y(2018)Yadav, Sambit, Kumar, and Ghosh, Graphene-based metasurface for a tunable broadband terahertz cross-polarization converter over a wide angle of incidence Appl Opt 57 8720-625
  • [10] Xi C(2016)Multiband switchable terahertz quarter-wave plates via phase-change metasurfaces IEEE Photonics J 8 1-8