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首页> 外文期刊>Physics Letters, A >How to improve the accuracy of equilibrium molecular dynamics for computation of thermal conductivity?
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How to improve the accuracy of equilibrium molecular dynamics for computation of thermal conductivity?

机译:如何提高平衡分子动力学计算导热系数的准确性?

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摘要

Equilibrium molecular dynamics (EMD) simulations through Green-Kubo formula (GKF) have been widely used in the study of thermal conductivity of various materials. However, there exist controversial simulation results which have huge discrepancies with experimental ones in literatures. In this Letter, we demonstrate that the fluctuation in calculated thermal conductivity is due to the uncertainty in determination of the truncation time, which is related to the ensemble and size dependent phonon relaxation time. We thus propose a new scheme in the direct integration of heat current autocorrelation function (HCACF) and a nonzero correction in the double-exponential-fitting of HCACF to describe correctly the contribution to thermal conductivity from low frequency phonons. By using crystalline Silicon (Si) and Germanium (Ge) as examples, we demonstrate that our method can give rise to the values of thermal conductivity in an excellent agreement with experimental ones.
机译:通过Green-Kubo公式(GKF)进行的平衡分子动力学(EMD)模拟已广泛用于研究各种材料的导热性。然而,在文献中存在有争议的模拟结果,与实验结果存在巨大差异。在这封信中,我们证明了计算出的热导率的波动是由于确定截断时间的不确定性所致,这与整体和尺寸相关的声子弛豫时间有关。因此,我们在热电流自相关函数(HCACF)的直接积分和HCACF的双指数拟合中的非零校正中提出了一种新方案,以正确描述低频声子对热导率的贡献。通过使用结晶硅(Si)和锗(Ge)为例,我们证明了我们的方法可以产生与实验值极好的热导率值。

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