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A reconfigurable terahertz polarization converter based on metal–graphene hybrid metasurface

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【作者】 黄俊翔傅涛李海鸥首照宇高喜

【Author】 Junxiang Huang;Tao Fu;Haiou Li;Zhaoyu Shou;Xi Gao;School of Information and Communication, Guilin University of Electronic Technology;Key Laboratory of THz Technology, Ministry of Education;

【通讯作者】 高喜;

【机构】 School of Information and Communication, Guilin University of Electronic TechnologyKey Laboratory of THz Technology, Ministry of Education

【摘要】 A metal-graphene hybrid metasurface polarization converter is designed in this Letter.The unit cell of the hybrid metasurface is composed of a butterfly-shaped structure whose branches are connected by multi-layer graphene sheets.The proposed device can be reconfigured from linear-to-circular polarization to cross-polarization by changing the Fermi energy of graphene.The simulation results show that for three-layer graphene,the device acts as a linear-to-circular polarization converter when E_F=0 eV and switches to a cross-polarization converter when EF=0.5 eV.Compared with single-layer graphene,the device with three-layer graphene can maintain the cross-polarization conversion performance under low Fermi energy.Furthermore,two equivalent circuits in the x and y directions are developed to understand the working mechanism of the device.

【Abstract】 A metal-graphene hybrid metasurface polarization converter is designed in this Letter.The unit cell of the hybrid metasurface is composed of a butterfly-shaped structure whose branches are connected by multi-layer graphene sheets.The proposed device can be reconfigured from linear-to-circular polarization to cross-polarization by changing the Fermi energy of graphene.The simulation results show that for three-layer graphene,the device acts as a linear-to-circular polarization converter when E_F=0 eV and switches to a cross-polarization converter when EF=0.5 eV.Compared with single-layer graphene,the device with three-layer graphene can maintain the cross-polarization conversion performance under low Fermi energy.Furthermore,two equivalent circuits in the x and y directions are developed to understand the working mechanism of the device.

【关键词】 graphenemetasurfacepolarization converterTHz
【Key words】 graphenemetasurfacepolarization converterTHz
【基金】 supported by the National Natural Science Foundation of China(Nos.61761010,61461016,61965009,and 61967005);part by the Natural Science Foundation of Guangxi(No.2018GXNSFAA281193);the Innovation Project of GUET Graduate Education(No.2018JYCX24)
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2020年01期
  • 【分类号】TB306;O441.4
  • 【被引频次】10
  • 【下载频次】57
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