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Use of terahertz photoconductive sources to characterize tunable graphene RF plasmonic antennas

机译:使用太赫兹光电导源来表征可调谐石墨烯RF等离子体天线

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摘要

Graphene, owing to its ability to support plasmon polariton waves in the terahertz frequency range, enables the miniaturization and electrical tunability of antennas to allow wireless communications among nanosystems. One of the main challenges in the characterization and demonstration of graphene antennas is finding suitable terahertz sources to feed the antenna. This paper characterizes the performance of a graphene RF plasmonic antenna fed with a photoconductive source. The terahertz source is modeled and, by means of a full-wave EM solver, the radiated power as well as the tunable resonant frequency of the device is estimated with respect to material, laser illumination, and antenna geometry parameters. The results show that with this setup the antenna radiates terahertz pulses with an average power up to 1 µW and shows promising electrical frequency tunability.
机译:石墨烯由于能够在太赫兹频率范围内支持等离激元极化波,因此可以实现天线的小型化和电可调性,从而实现纳米系统之间的无线通信。表征和演示石墨烯天线的主要挑战之一是寻找合适的太赫兹源为天线供电。本文描述了带有光导源的石墨烯RF等离子体天线的性能。对太赫兹源进行建模,并借助全波EM解算器,根据材料,激光照度和天线几何形状参数估算设备的辐射功率以及可调谐振频率。结果表明,通过这种设置,天线发射的太赫兹脉冲平均功率高达1 µW,并显示出令人鼓舞的电频率可调性。

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