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Graphene-based tunable coding metasurfaces in terahertz band

机译:太赫兹乐队基于石墨烯的可调调编码元件

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Two graphene-based tunable coding metasurfaces are proposed for beam steering in terahertz band. The coding metasurfaces are composed of the unit cell with a sandwich-like structure, which contains the top layer of anisotropic rectangular graphene structure, intermediate dielectric layer and ground plane. The designed metasurfaces can be dynamically adjusted since the characteristics of unit cell are changed by the chemical potential of graphene. When the relaxation time and chemical potential of graphene are 0.8 ps and 0.85 eV, respectively. The coding metasurfaces could realize beam steering in 1.30 THz-1.70 THz. On the other hand, when the chemical potential of graphene is 0 eV, two metasurfaces without beam steering in this band. The designed graphene-based tunable coding metasurfaces has potential application value in the fields of terahertz communication, sensing, etc.
机译:提出了两种基于石墨烯的可调编码元件,用于在太赫兹带中的光束转向。编码元件由具有夹层状结构的单元电池组成,其包含各向异性矩形石墨烯结构,中间介电层和接地平面的顶层。可以动态地调整设计的元件,因为通过石墨烯的化学电位改变了单元电池的特性。当石墨烯的弛豫时间和化学电位分别为0.8 ps和0.85eV时。编码元件可以在1.30 thz-1.70 thz中实现光束转向。另一方面,当石墨烯的化学电位为0 eV时,两个元件没有光束转向的元件。设计的基于石墨烯的可调性编码元件在太赫兹通信,传感等领域具有潜在的应用价值。

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