柱状管状纳米线中的电荷和热流

H. R. Heris, K. O. Klausen, A. Sitek, S. Erlingsson, A. Manolescu
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引用次数: 1

摘要

我们计算了由温度梯度或化学势偏压产生的管状纳米线中的电子电荷和热输运。这些纳米线对应于具有绝缘(未掺杂)芯和导电(掺杂)壳的半导体核壳纳米线,因此导电仅发生在壳中。这种纳米线的横截面是典型的多边形。研究了截面形状和壳体厚度对壳体电导和热传导的影响。我们使用landauer - bttiker方法来计算电流和热流作为温度和化学势偏差超出线性范围的非线性函数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Charge and heat currents in prismatic tubular nanowires
We calculate electronic charge and heat transport in tubular nanowires generated by a temperature gradient or a chemical potential bias. These nanowires correspond to semiconductor core-shell nanowires with insulating (undoped) core and conductive (doped) shell, such that the conduction takes place only in the shell. The cross section of such nanowires is typically polygonal. We study the influence of the cross section shape and shell thickness on the electric and heat conduction of the shell. We use the Landauer-Büttiker approach to calculate the electric and heat currents as a non-linear function of temperature and chemical potential bias beyond the linear regime.
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