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Waveguide-Fed Tunable Terahertz Antenna Based on Hybrid Graphene-Metal Structure

机译:基于混合石墨烯-金属结构的波导馈电可调谐太赫兹天线

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This paper presents a novel tunable terahertz antenna based on a hybrid graphene-metal structure fed by a waveguide. First, the hybrid plasmonic waveguide is studied by analytical and numerical methods. Then, an efficient terahertz antenna is designed by an analytical approach using the transmission line model. The antenna performances are evaluated in the terahertz frequency band by a full-wave electromagnetic solver. Contrary to previous terahertz antennas based on graphene, the results show that the proposed antenna has satisfactory radiation efficiency and gain. Moreover, this study demonstrates that the reflection parameter of the antenna can be tuned by the chemical potential of graphene. The proposed antenna can be applied for terahertz applications such as wireless communication in interchip and intrachip devices and sensing.
机译:本文提出了一种新颖的可调谐太赫兹天线,其基于波导馈入的混合石墨烯-金属结构。首先,通过解析和数值方法研究混合等离子体激元波导。然后,使用传输线模型通过分析方法设计了有效的太赫兹天线。通过全波电磁求解器在太赫兹频带中评估天线性能。与以前的基于石墨烯的太赫兹天线相反,结果表明所提出的天线具有令人满意的辐射效率和增益。此外,这项研究表明,可以通过石墨烯的化学势来调节天线的反射参数。所提出的天线可以用于太赫兹应用,例如芯片间和芯片内设备中的无线通信以及感测。

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