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Phonon-electron coupling and nonlocal heat transport in Bi2Te3 nanowires

机译:Phonon-Electron耦合和Bi2Te3纳米线中的非函数热传输

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摘要

A hydrodynamical model of heat transfer with phonons and electrons is applied to infer the steady-state temperature profile in a Bi2Te3 nanowire. Our analysis is concerned with systems which allow for different temperatures of phonons and electrons. Along with the approach of kinetic theory, the phonons and the electrons are regarded as a gas-like mixture flowing through the crystal lattice. The coupling between phonons and electrons is taken into account by an additional term in the partial balances of energy of the components of the mixture. The compatibility of the model with the second law of thermodynamics is investigated in view of the requirement of positive entropy production, and of a nonlocal constitutive equation for the entropy flux.
机译:利用子和电子传热的热转移流体动力学模型,以推断Bi2Te3纳米线中的稳态温度曲线。 我们的分析涉及允许声子和电子温度的系统。 随着动力学理论的方法,声子和电子被认为是流过晶格的气体混合物。 通过在混合物的组分的部分余量的部分余额中通过额外的术语考虑声子和电子之间的耦合。 考虑到对第二热力学定律的模型的兼容性考虑到阳性熵产生,并且是熵通量的非局部组成方程。

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