Electromagnetic wave propagation characteristics in single walled metallic carbon nanotube

Md Shantanu Islam, M. Matin, M. Hossain
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引用次数: 1

Abstract

The metallic single walled carbon nanotubes have been proposed as a promising inter connector in intra-chip and inter-chip packaging applications as well as passive devices for future generation terahertz IC (Integrated Circuit) technology, due to their superior electrical and thermal properties compared with those of copper. In this paper a theoretical investigation is carried out to predict phase and group velocities and the attenuation characteristics of single walled metallic carbon nanotubes (SWCNTs), and bundled SWCNTs in the terahertz regime. The expressions for attenuation constant, phase constant, phase velocity, and group velocity have been derived using transmission line theory. It is found that the predicted phase and group velocities in single SWCNT, bundled SWCNTs are strongly frequency dependent and increases with frequency. It is also noticed that the group velocity decreases after having a peak at around 100 GHz for both single SWCNT and bundled SWCNT.
电磁波在单壁金属碳纳米管中的传播特性
与铜相比,金属单壁碳纳米管具有优越的电学和热学性能,因此在芯片内和芯片间封装应用以及下一代太赫兹集成电路技术的无源器件中,被认为是一种很有前途的内部连接器。本文从理论上研究了单壁金属碳纳米管(SWCNTs)和束状SWCNTs在太赫兹波段的相速度和群速度以及衰减特性。利用传输线理论推导了衰减常数、相位常数、相速度和群速度的表达式。研究发现,单个SWCNTs和捆绑SWCNTs的预测相速度和群速度与频率密切相关,并随频率增加而增加。还注意到,对于单个swcnts和捆绑swcnts,在100 GHz左右出现峰值后,群速度下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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