努森数
声子
玻尔兹曼方程
热导率
石墨
凝聚态物理
材料科学
努森流
努森扩散
热的
Hagen-Poiseuille方程
玻尔兹曼常数
平均自由程
热力学
声子拖拽
直接模拟蒙特卡罗
弹道传导
作者
Wanying Liu,Wei-Zhe Yuan,Yangyu Guo
摘要
Phonon Poiseuille flow has been recently demonstrated in graphite ribbons via both theory and experiment through super-ballistic temperature-dependent thermal conductivity. However, the super-ballistic size dependence of thermal conductivity in the hydrodynamic regime, i.e., phonon Knudsen minimum, remains to be further studied. In this work, we investigate the size effect on phonon Knudsen minimum in three-dimensional graphite ribbons based on a direct solution of real- and reciprocal-space-dependent phonon Boltzmann transport equation with first-principles input. We also quantify the strength of the phonon Knudsen minimum by introducing two metrics: the depth and breadth of super-linear size dependence of thermal conductivity. Our quantitative analysis of phonon Knudsen minimum in the width or thickness direction reveals critical thickness or width, respectively, for its occurrence. This work, thus, promotes deeper understanding of size effect on phonon Knudsen minimum and gives helpful guidance for future experimental detection in realistic graphitic structures.
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