多层石墨烯纳米带互连的频率响应分析模型

V. Kumar, A. Naeemi
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引用次数: 12

摘要

采用一般的多导体分析方法,得到了多层石墨烯互连的频率响应分析模型。研究了顶触点和侧触点两种触点的频率响应与层数的关系。尽管几乎所有关于多层石墨烯的实验都使用仅与顶层耦合的顶部触点,但现有的分析模型考虑了与所有层耦合的侧触点。结果表明,对于侧触点,频率响应随层数的增加而不断提高,而顶部触点的频率响应在几层以上几乎没有提高。由频率响应得到的延迟和能量延迟积在与互连长度有关的最佳层数处最小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical models for the frequency response of multi-layer graphene nanoribbon interconnects
Analytical models for frequency response of multilayer graphene interconnects are obtained by a general multi-conductor analysis approach. The dependence of frequency response on the number of layers is studied for two types of contacts: top and side contacts. Although virtually all experiments on multi-layer graphene use top contacts that couple only to the top layer, the analytical models available consider side contacts that couple to all the layers. It is shown that for side contacts, the frequency response improves continuously with number of layers, unlike the top contacts, which show very little improvement beyond a few layers. The delay and energy-delay-product obtained from the frequency response are minimized at some optimal number of layers, which is dependent on the interconnect length.
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