Full-wave evaluation of carbon nanotubes as microwave interconnects

Kichul Kim, P. Rice, P. Kabos, D. Filipović
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引用次数: 1

Abstract

Microwave interconnect configurations composed of single wall carbon nanotubes (CNTs) are studied in this paper. Specifically, an atomic layer deposition (ALD) enabled nano-coaxial line with individual CNTs comprising the inner conductor, CNT Goubau line with ALD enabled alumina coating, a nano-coaxial line with inner conductor composed of CNT bundles, and Goubau lines of CNT bundles are discussed. The characteristic impedance and losses of these interconnects are compared with the similar size copper-based transmission lines. Full wave simulations with incorporated quantum effects are conducted using finite element and method of moments tools ANSYS HFSS 1 and EMSS FEKO1, respectively. A thorough modeling validation, interconnect design and analysis are carried out over the wide microwave spectrum. Obtained results clearly show that although their inherent loss and impedance are high, the CNT interconnects can indeed outperform their copper counterparts with lower loss and impedance, and that observation is reinforced with decreasing the CNT radius.
碳纳米管作为微波互连的全波评价
研究了由单壁碳纳米管组成的微波互连结构。具体来说,本文讨论了具有单个碳纳米管组成的内导体的原子层沉积(ALD)纳米共轴线,具有ALD氧化铝涂层的碳纳米管沟槽线,具有由碳纳米管束组成的内导体的纳米共轴线,以及碳纳米管束的沟槽线。将这些互连线的特性阻抗和损耗与类似尺寸的铜基传输线进行比较。利用有限元和矩量法工具ANSYS HFSS 1和EMSS FEKO1分别进行了含量子效应的全波模拟。在广泛的微波频谱范围内进行了全面的建模验证、互连设计和分析。所获得的结果清楚地表明,尽管其固有损耗和阻抗很高,但碳纳米管互连确实可以以更低的损耗和阻抗优于铜互连,并且随着碳纳米管半径的减小,这一观察结果得到了加强。
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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