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Tunable invisibility cloaking by using isolated graphene-coated nanowires and dimers

机译:通过使用隔离的石墨烯涂层纳米线和二聚体进行可调节的隐形隐身

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摘要

We investigate, both theoretically and numerically, a graphene-coated nano-cylinder illuminated by a plane electromagnetic wave in the far-infrared range of frequencies. We have derived an analytical formula that enables fast evaluation of the spectral window with a substantial reduction in scattering efficiency for a sufficiently thin cylinder. This polarization-dependent effect leads to tunable resonant invisibility that can be achieved via modification of graphene chemical potential monitored by the gate voltage. A multi-frequency cloaking mechanism based on dimer coated nanowires is also discussed in detail.
机译:我们在理论和数值上都研究了在远红外频率范围内由平面电磁波照射的石墨烯涂层纳米圆柱体。我们得出了一个分析公式,该公式能够快速评估光谱窗口,同时对于足够薄的圆柱体,散射效率会大大降低。这种与极化有关的效应导致可调谐的共振隐身,该隐身可通过修改由栅极电压监控的石墨烯化学势来实现。还详细讨论了基于二聚体涂层纳米线的多频隐身机制。

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