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Quantitative theory of nanowire and nanotube antenna performance

机译:纳米线和纳米管天线性能的定量理论

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摘要

We present quantitative predictions of the performance of nanotubes and nanowires as antennas, including the radiation resistance, the input reactance and resistance, and antenna efficiency, as a function of frequency and nanotube length. Particular attention is paid to the quantum capacitance and kinetic inductance. We develop models for both far-field antenna patterns as well as near-field antenna-to-antenna coupling. In so doing, we also develop a circuit model for a transmission line made of two parallel nanotubes, which has applications for nanointerconnect technology. Finally, we derive an analog of Hallen's integral equation appropriate for single-walled carbon nanotube antennas.
机译:我们提出了作为天线的纳米管和纳米线性能的定量预测,包括作为频率和纳米管长度的函数的辐射电阻,输入电抗和电阻以及天线效率。特别要注意量子电容和动电感。我们开发了远场天线方向图以及近场天线到天线耦合的模型。在此过程中,我们还开发了由两个平行纳米管组成的传输线的电路模型,该模型已在纳米互连技术中得到了应用。最后,我们推导了适用于单壁碳纳米管天线的Hallen积分方程的类似物。

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