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首页> 外文期刊>Journal of Experimental and Theoretical Physics >The Effect of Normal Phonon-Phonon Scattering Processes on the Maximum Thermal Conductivity of Isotopically Pure Silicon Crystals
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The Effect of Normal Phonon-Phonon Scattering Processes on the Maximum Thermal Conductivity of Isotopically Pure Silicon Crystals

机译:常规声子-声子散射过程对同位素纯硅晶体最大热导率的影响

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摘要

The effect of normal phonon-phonon scattering processes on the thermal conductivity of silicon crystals with various degrees of isotope disorder is considered. The redistribution of phonon momentum in normal scattering processes is taken into account within each oscillation branch (the callaway generalized model), as well as between different oscillation branches of the phonon spectrum (the Herring mechanism). The values of the parameters are obtained that determine the phonon momentum relaxation in anharmonic scattering processes. The contributions of the drift motion of longitudinal and transverse phonons to the thermal conductivity are analyzed. It is shown that the momentum redistribution between longitudinal and transverse phonons in the Herring relaxation model represents an efficient mechanism that limits the maximum thermal conductivity in isotopically pure silicon crystals. The dependence of the maximum thermal conductivity on the degree of isotope disorder is calculated. The maximum thermal conductivity of isotopically pure silicon crystals is estimated for two variants of phonon momentum relaxation in normal phonon-phonon scattering processes.
机译:考虑了正常声子-声子散射过程对具有不同同位素无序度的硅晶体的热导率的影响。考虑了正常散射过程中声子动量的重新分布(在每个振荡分支内(卡拉威广义模型))以及声子谱的不同振荡分支之间(鲱鱼机制)。获得确定非谐散射过程中声子动量弛豫的参数值。分析了纵向和横向声子的漂移运动对热导率的贡献。结果表明,鲱鱼弛豫模型中纵向和横向声子之间的动量重新分布代表了一种有效的机制,该机制限制了同位素纯硅晶体中的最大热导率。计算最大热导率对同位素无序度的依赖性。对于正常声子-声子散射过程中声子动量弛豫的两个变体,估计了同位素纯硅晶体的最大热导率。

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