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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >Comparative Study on Multilayer Graphene Nanoribbon (MLGNR) Interconnects
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Comparative Study on Multilayer Graphene Nanoribbon (MLGNR) Interconnects

机译:多层石墨烯纳米带(MLGNR)互连的比较研究

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Based on an equivalent single-conductor (ESC) model of multilayer graphene nanoribbon (MLGNR) interconnects with side contacts, comparative study on their distributed parameters and transmission characteristics is performed in this paper. It is found that the number of conducting channels of a metallic MLGNR interconnect is the linear function of its width and Fermi energy, which can be described by an analytical equation. Its equivalent inductance and capacitance in the ESC model can also be characterized by a set of closed-form equations. Furthermore, according to the ITRS projection, transmission performance of the MLGNR interconnects with different contacts are predicted and compared with their Cu and carbon nanotube counterparts at different technology nodes. Also, some numerical results prove that MLGNR interconnects can provide better performance than Cu wires in particular at intermediate level. Even with the maximum crosstalk impacts considered, the advantage of MLGNR interconnects over Cu wires can still be kept.
机译:基于具有侧接触的多层石墨烯纳米带(MLGNR)互连的等效单导体(ESC)模型,对它们的分布参数和传输特性进行了比较研究。发现金属MLGNR互连的导电通道数是其宽度和费米能量的线性函数,可以通过解析方程来描述。 ESC模型中的等效电感和电容也可以通过一组闭式方程式来表征。此外,根据ITRS的预测,可以预测具有不同触点的MLGNR互连的传输性能,并将其与不同技术节点上的Cu和碳纳米管对应物进行比较。而且,一些数值结果证明,MLGNR互连可以提供比Cu导线更好的性能,特别是在中间水平。即使考虑到最大的串扰影响,仍然可以保持MLGNR互连优于铜线的优势。

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