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A transmission line model for metallic carbon nanotube interconnects

机译:金属碳纳米管互连的传输线模型

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A transmission line (TL) model describing the propagation of electric signals along metallic single wall carbon nanotube (CNT) interconnects is derived in a simple and self-consistent way within the framework of the classical electrodynamics. The conduction electrons of metallic CNTs are modelled as an infinitesimally thin cylindrical layer of a compressible charged fluid with friction, moving in a uniform neutralizing background. The dynamic of the electron fluid is studied by means of the linearized hydrodynamic equations with the pressure assumed to be that of a degenerate spin-1/2 ideal Fermi gas. Transport effects due to the electron inertia, quantum fluid pressure and electron scattering with the ion lattice significantly influence the propagation features of the TL. The simplicity and robustness of the fluid model make the derivation of the TL equations more straightforward than other derivations recently proposed in the literature and provide simple and clear definitions of the per unit length (p.u.l.) TL parameters. In particular, this approach has provided a new circuit model that can be used effectively in the analysis of networks composed of CNT transmission lines and lumped elements. The differences and similarities between the proposed model and those given in the literature are highlighted. Copyright
机译:描述电信号沿金属单壁碳纳米管(CNT)互连线传播的传输线(TL)模型是在经典电动力学框架内以简单且自洽的方式得出的。金属CNT的传导电子被建模为可压缩带电流体的无限薄的圆柱形层,带有摩擦,在均匀的中和背景下移动。通过线性化流体动力学方程研究电子流体的动力学,假定压力为简并自旋1/2理想费米气体的压力。由电子惯性,量子流体压力和电子与离子晶格引起的传输效应极大地影响了TL的传播特性。流体模型的简单性和鲁棒性使得TL方程的推导比文献中最近提出的其他推导更直接,并且提供了每单位长度(p.u.l.)TL参数的简单明了的定义。特别地,这种方法提供了一种新的电路模型,可以有效地用于分析由CNT传输线和集总元件组成的网络。突出了所提出的模型与文献中给出的模型之间的异同。版权

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