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首页> 外文期刊>The Journal of Chemical Physics >Molecular-dynamics simulation of argon nucleation from supersaturated vapor in the NVE ensemble
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Molecular-dynamics simulation of argon nucleation from supersaturated vapor in the NVE ensemble

机译:NVE系综中过饱和蒸气中氩成核的分子动力学模拟

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摘要

The possibility to conduct simulations of homogeneous nucleation of argon from a supersaturated vapor phase using a microcanonical or NVE ensemble is evaluated (NVE: number of particles N, volume V, and energy E are constant). In order to initiate a phase separation kinetic energy is removed from the system in one step which transfers the system into a supersaturated state. After this temperature jump the simulation is continued in a NVE ensemble. The simulations are performed for different initial-state points and different temperature jumps. The cluster formation and growth over the course of the adiabatic simulations are analyzed. The progression of the temperature being related to the cluster size in NVE systems is traced. Also the influence of the size of the simulation system is investigated. For a certain range of low supersaturation a dynamic coexistence between two states has been found. Furthermore, the obtained nucleation rates are correlated with two simple functions. By applying the nucleation theorems to these functions the size and excess energy of the critical cluster are estimated. The results are consistent with other theoretical data and experimental data available in the literature. (c) 2006 American Institute of Physics.
机译:评估了使用微规范或NVE集成进行过饱和气相中氩的均匀成核的模拟的可能性(NVE:粒子数N,体积V和能量E恒定)。为了引发相分离,在一步中将动能从系统中除去,这将系统转换为过饱和状态。在该温度跃变之后,在NVE集合中继续进行模拟。针对不同的初始状态点和不同的温度跳跃执行仿真。分析了绝热模拟过程中的团簇形成和生长。跟踪了与NVE系统中团簇大小相关的温度变化。还研究了仿真系统大小的影响。对于一定范围的低过饱和度,发现了两个状态之间的动态共存。此外,获得的成核速率与两个简单函数相关。通过将成核定理应用于这些函数,可以估算临界簇的大小和多余的能量。结果与文献中可获得的其他理论数据和实验数据一致。 (c)2006年美国物理研究所。

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