非谐性
声子
热导率
凝聚态物理
半导体
锗
硅
材料科学
从头算量子化学方法
热的
从头算
玻尔兹曼方程
原子间势
格子(音乐)
晶格常数
热力学
化学
物理
计算化学
光电子学
分子动力学
复合材料
量子力学
声学
分子
衍射
作者
David Broido,Michael Malorny,G. Birner,Natalio Mingo,Derek A. Stewart
摘要
We present an ab initio theoretical approach to accurately describe phonon thermal transport in semiconductors and insulators free of adjustable parameters. This technique combines a Boltzmann formalism with density functional calculations of harmonic and anharmonic interatomic force constants. Without any fitting parameters, we obtain excellent agreement (<5% difference at room temperature) between the calculated and measured intrinsic lattice thermal conductivities of silicon and germanium. As such, this method may provide predictive theoretical guidance to experimental thermal transport studies of bulk and nanomaterials as well as facilitating the design of new materials.
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