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Dynamically controllable graphene terahertz splitters with nonreciprocal properties

机译:具有非探测性质的动态可控石墨烯Terahertz分离器

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摘要

Two novel graphene-based nonreciprocal four-port splitters for the terahertz region are proposed. The input power is divided between two output ports, whereas the input port is isolated from the output ports due to the presence of the fourth port. The splitters consist of a circular graphene resonator and four graphene wave-guides coupled to the resonator. These elements are placed on the two-layer dielectric substrate. The central part of the splitter is under a biasing DC magnetic field normal to the graphene layer. The surface plasmon-polariton wave in the input port excites the dipole resonance in the resonator. The splitters have the following parameters: the input power is divided between two output ports almost equally with -4.4 dB. The input port is isolated from two output ports by -15 dB. The bandwidth is 4.0% with a central frequency of 7.4 THz. The biasing DC magnetic field is 0.8 T, and the Fermi energy of graphene epsilon(F) = 0.15 eV. Changing the Fermi energy by electrostatic gating allows one to dynamically control the central frequency of the splitters. (C) 2019 Optical Society of America
机译:提出了两种新的基于石墨烯的非透镜四端口分离器,用于太赫兹区域。输入功率在两个输出端口之间划分,而由于第四端口的存在,输入端口与输出端口隔离。分离器包括圆形石墨烯谐振器和耦合到谐振器的四个石墨烯波导。这些元件放置在双层电介质基板上。分离器的中心部分位于垂直于石墨烯层的偏置直流磁场。输入端口中的表面等离子体 - 极性电波激励谐振器中的偶极谐振。分离器具有以下参数:输入功率在两个输出端口之间分割几乎与-4.4 dB相等。输入端口由-15 dB从两个输出端口隔离。带宽为4.0%,中央频率为7.4至67至THz。偏置直流磁场为0.8吨,石墨烯epsilon(f)= 0.15eV的费米能量。通过静电门控改变FERMI能量允许一个人动态地控制分离器的中心频率。 (c)2019年光学学会

著录项

  • 来源
    《Applied optics》 |2019年第24期|共6页
  • 作者

    Dmitriev Victor; Castro Wagner;

  • 作者单位

    Fed Univ Dept Elect Engn POB 8619 BR-66075900 Belem Para Brazil;

    Fed Univ Dept Elect Engn POB 8619 BR-66075900 Belem Para Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
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