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Tests of the homogeneous nucleation theory with molecular-dynamics simulations. I. Lennard-Jones molecules

机译:用分子动力学模拟测试均相成核理论。一,伦纳德·琼斯分子

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Two kinds of the homogeneous nucleation theory exist at the present: the classical nucleation theory and the semiphenomenological model. To test them, we performed molecular-dynamics (MD) simulations of nucleation from vapor to liquid with 5000-20 000 Lennard-Jones-type molecules. Simulations were done for various values of supersaturation ratios (from 2 to 10) and temperatures (from 80 to 120 K). We compared the size distribution of clusters in MD simulations with those in the theoretical models because the number density of critical clusters governs the nucleation rate. We found that the semiphenomenological model achieves excellent agreements in size distributions of the clusters with all MD simulations we done. The classical theory underestimates the number density of the clusters in the temperature range of 80-100 K, but overestimates in 100-120 K. The semiphenomenological model also predicts well the nucleation rate in MD simulations, while the classical nucleation theory does not. Our results confirmed the validity of the semiphenomenological model for Lennard-Jones-type molecules. (c) 2005 American Institute of Physics.
机译:目前存在两种均质成核理论:经典成核理论和半现象学模型。为了测试它们,我们使用5000-20 000 Lennard-Jones型分子进行了从蒸汽到液体成核的分子动力学(MD)模拟。针对过饱和率(从2到10)和温度(从80到120 K)的各种值进行了仿真。我们将MD模拟中的团簇尺寸分布与理论模型中的团簇尺寸分布进行了比较,因为关键团簇的数量密度决定着成核速率。我们发现,与我们完成的所有MD模拟一样,半现象学模型在簇的大小分布上实现了极好的一致性。经典理论低估了80-100 K温度范围内的团簇数密度,但高估了100-120 K的簇数。半现象学模型也很好地预测了MD模拟中的成核速率,而经典成核理论则没有。我们的结果证实了Lennard-Jones型分子的半现象学模型的有效性。 (c)2005年美国物理研究所。

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