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Electrically and Magnetically Biased Graphene-Based Cylindrical Waveguides: Analysis and Applications as Reconfigurable Antennas

机译:电磁偏置的基于石墨烯的圆柱波导:可重构天线的分析和应用

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摘要

The propagation of surface waves along electrically and magnetically biased graphene-based cylindrical waveguides (GCWs) is investigated in detail. Analytical dispersion equations are derived for several GCW geometries, considering the presence of an inner metallic core and multiple (coaxial-like) graphene layers. The proposed formulation reveals a fundamental connection between surface plasmons found in GCWs/carbon nanotubes and planar graphene structures. Numerical results confirm the higher confinement of modes supported by GCWs compared with their planar counterparts, while keeping a similar level of losses. The proposed structure is applied to develop plasmonic reconfigurable dipole antennas in the low THz band, which provide higher radiation efficiency than current graphene-based radiators, without requiring the presence of bulky lenses. We envision that the proposed GCWs may find application in reconfigurable THz transceivers, near-field application, wireless interconnects, and sensing systems.
机译:详细研究了表面波沿电和磁偏置的基于石墨烯的圆柱波导(GCW)的传播。考虑到内部金属芯和多个(同轴)石墨烯层的存在,针对几种GCW几何形状导出了分析色散方程。拟议的配方揭示了GCW /碳纳米管中发现的表面等离子体与平面石墨烯结构之间的基本联系。数值结果证实了与平面同类飞机相比,GCW支持的模式范围更高,同时保持了相似的损耗水平。所提出的结构用于开发低THz频段的等离激元可重构偶极天线,该天线可提供比当前基于石墨烯的辐射器更高的辐射效率,而无需使用笨重的透镜。我们设想,提出的GCW可能会在可重新配置的THz收发器,近场应用,无线互连和传感系统中找到应用。

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