首页> 外文会议>ASME summer heat transfer conference;HT2009 >MOLECULAR DYNAMICS SIMULATIONS OF THE THERMAL CONDUCTIVITY OF BISMUTH TELLURIDE USING TWO-BODY INTERATOMIC POTENTIALS
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MOLECULAR DYNAMICS SIMULATIONS OF THE THERMAL CONDUCTIVITY OF BISMUTH TELLURIDE USING TWO-BODY INTERATOMIC POTENTIALS

机译:二体间原子电位模拟碲化铋热导率的分子动力学模拟

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Two-body interatomic potentials in the Morse potential form have been developed for bismuth telluride, and the potentials are used in molecular dynamics (MD) simulations to predict the thermal conductivity. The density functional theory with local density approximations is first used to calculate the total energies for many artificially distorted Bi_2Te_3 configurations to produce the energy surface. Then by fitting to this energy surface and other experimental data, the Morse potential form is parameterized. The fitted empirical interatomic potentials are shown to reproduce the elastic and phonon data well. Molecular dynamics simulations are then performed to predict the thermal conductivity of bulk Bi_2Te_3 at different temperatures, and the results agree with experimental data well.
机译:已经为铋碲化物开发了摩尔斯潜在形式的双体单元势,并且电位用​​于分子动力学(MD)模拟以预测导热率。首先使用具有局部密度近似的密度函数理论来计算许多人为失真的Bi_2Te_3配置以产生能量表面的总能量。然后通过对该能量表面和其他实验数据拟合,摩尔斯潜在形式是参数化的。符合拟合的经验外部势能良好地再现弹性和声子数据。然后进行分子动力学模拟以预测不同温度的散装Bi_2Te_3的导热率,结果与实验数据吻合良好。

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