首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >ASSESSMENT OF THE HOLLAND MODEL FOR SILICON PHONON-PHONON RELAXATION TIMES USING LATTICE DYNAMICS CALCULATIONS
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ASSESSMENT OF THE HOLLAND MODEL FOR SILICON PHONON-PHONON RELAXATION TIMES USING LATTICE DYNAMICS CALCULATIONS

机译:基于晶格动力学计算的硅声子-声子弛豫时间的荷兰模型评估

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We assess the ability of the Holland model to accurately predict phonon-phonon relaxation times from bulk thermal conductivity values. Lattice dynamics calculations are used to obtain phonon-phonon relaxation times and thermal conductivities for temperatures ranging from 10 to 1000 Kfor Stillinger-Weber silicon. The Holland model is then fit to these thermal conductivities and used to predict relaxation times, which are compared to the relaxation times obtained by lattice dynamics calculations. We find that fitting the Holland model to both total and mode-dependent thermal conductivities does not result in accurate mode-dependent phonon-phonon relaxation times.
机译:我们评估了Holland模型从整体热导率值准确预测声子-声子弛豫时间的能力。晶格动力学计算用于获得Stillinger-Weber硅在10至1000 K范围内温度下的声子-声子弛豫时间和热导率。然后将Holland模型拟合到这些热导率并用于预测弛豫时间,将其与通过晶格动力学计算获得的弛豫时间进行比较。我们发现,将霍兰德模型拟合为总的和模式相关的热导率并不会导致准确的模式相关的声子-声子弛豫时间。

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