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首页> 外文期刊>The Journal of Chemical Physics >Critical cluster size and droplet nucleation rate from growth and decay simulations of Lennard-Jones clusters
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Critical cluster size and droplet nucleation rate from growth and decay simulations of Lennard-Jones clusters

机译:Lennard-Jones团簇的生长和衰减模拟得出的临界团簇尺寸和液滴成核速率

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摘要

We study a single cluster of Lennard-Jones atoms using a novel and physically transparent Monte Carlo simulation technique. We compute the canonical ensemble averages of the grand canonical growth and decay probabilities of the cluster, and identify the critical cluster, the size for which the growth and decay probabilities are equal. The size and internal energy of the critical cluster, for different values of the temperature and chemical potential, are used together with the nucleation theorems to predict the behavior of the nucleation rate as a function of these parameters. Our results agree with those found in the literature, and roughly correspond to the predictions of classical theory. In contrast to most other simulation studies, we are able to concentrate on the properties of the clusters which are most important to the process of nucleation, namely those around the critical size. This makes our simulations computationally more efficient. (C) 2000 American Institute of Physics. [S0021- 9606(00)50209-8]. [References: 29]
机译:我们使用一种新颖且物理透明的蒙特卡洛模拟技术研究Lennard-Jones原子的单个簇。我们计算集群的典型正则增长和衰变概率的典型集合平均数,并确定临界簇,即增长和衰变概率相等的大小。对于温度和化学势的不同值,临界簇的大小和内能与成核定理一起用于预测成核速率随这些参数的变化情况。我们的结果与文献中的结果一致,并且大致对应于古典理论的预测。与大多数其他模拟研究相比,我们能够专注于对成核过程最重要的团簇性质,即临界尺寸附近的性质。这使我们的仿真在计算上更加有效。 (C)2000美国物理研究所。 [S0021- 9606(00)50209-8]。 [参考:29]

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