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Electronic Transport In Carbon Nanotubes: Diffusive And Localized Regimes

机译:碳纳米管中的电子传输:扩散和局部化的制度。

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摘要

A fully self-consistent analysis of Boltzmann's equations for electrons and phonons is used to study how the resistance of single-walled carbon nanotubes evolves as a function of its length. We demonstrate that the population of hot optical phonons controls the electronic transport of short nanotubes, whereas acoustical phonons take the leading role when the nanotube is very long. In this limit of long tubes, we also analyze the interplay between the diffusive and localized transport regimes when the electron mean-free path and the localization length due to impurities are comparable.
机译:电子和声子玻尔兹曼方程的完全自洽分析用于研究单壁碳纳米管的电阻如何随其长度变化。我们证明了热光学声子的数量控制着短纳米管的电子传输,而当纳米管很长时,声子则起着主导作用。在长管的这个极限中,我们还分析了当电子平均自由程与杂质引起的定位长度相当时,扩散和局部传输方式之间的相互作用。

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