硅薄膜中的声子输运:温度振荡对有效导热系数的影响

S. Bin Mansoor, B. Yilbas
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引用次数: 6

摘要

本文考虑了硅薄膜中的声子输运,并研究了温度热源的时间振荡对声子输运的影响。通过数值求解频率相关的二维瞬态玻尔兹曼方程,观察声子对薄膜有效导热系数的准弹道效应。在不同时期的温度振荡被纳入薄膜的底面作为热源。通过引入沿该面分布的空间高斯分布来改变温度源的大小。为了评估声子在薄膜中的分布,我们引入了等效平衡温度。我们测定了薄膜的有效导热系数,并分析了其在不同温度振荡周期和高斯参数下的变化。研究发现,温度振荡周期的减小会降低薄膜的有效导热系数,这在低高斯参数下更为明显。在这种情况下,声子的准弹道行为不利于薄膜的有效导热性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phonon Transport in Silicon Thin Film: Effect of Temperature Oscillation on Effective Thermal Conductivity
In this article, we consider phonon transport in thin silicon film and examine the influence of temporal oscillation of the temperature heat source on the phonon transport. We solve the frequency-dependent transient two-dimensional Boltzmann equation numerically to observe the quasi-ballistic effects of the phonons on the film effective thermal conductivity. Temperature oscillation at different periods is incorporated at the bottom face of the film as a heat source. The size of the temperature source is varied by introducing the spatial Gaussian distribution along this face. In order to assess the phonon distribution in the film, we introduce the equivalent equilibrium temperature. We determine the effective thermal conductivity of the film and analyze its variation due to the different periods of the temperature oscillation and the Gaussian parameters. It is found that reducing the period of the temperature oscillation lowers the effective thermal conductivity of the film, which is more pronounced for low Gaussian parameters. In this case, the quasi-ballistic behavior of phonons contributes adversely to the effective thermal conductivity of the film.
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来源期刊
Transport Theory and Statistical Physics
Transport Theory and Statistical Physics 物理-物理:数学物理
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