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Harmonic and Intermodulation Performance of Carbon-Nanotube-Based Nanorelay

机译:基于碳 - 纳米管的纳米柱的谐波和互调性能

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In this paper a mathematical model; basically a Fourier-series model, is proposed for the current-voltage characteristics of a Carbon-Nanotube (CNT)-based nanorelay. Using this model closed-form expressions for the amplitudes of the harmonic and intermodulation components of the drain current of a CNT-based nanoraely, excited by a source-to-gate voltage comprising a multisinusoidal signal superimposed on a DC bias voltage, are obtained. These expressions, basically in terms of the ordinary Bessel functions, can be used for investigating the harmonic and intermodulation performance of the CNT-based nanorelay excited by a multisinusoidal signal. The results obtained from the special case of a two-tone equal-amplitude signal are given in detail.
机译:在本文中,一个数学模型;基本上是一种傅立叶系列模型,用于基于碳纳米管(CNT)的纳米柱的电流 - 电压特性。利用该模型的闭合表达式用于基于CNT的基于CNT的漏极电流的谐波和互调电流的响声和互调的组件,通过包括叠加在DC偏置电压上的多限型信号的源极电压的源极电压。这些表达式基本上就普通的贝塞尔功能而言,可以用于研究由多轴信号激发的基于CNT的纳米型的谐波和互调性能。详细给出了从双色调相等幅度信号的特殊情况获得的结果。

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