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Molecular Dynamics Simulation of Homogeneous Nucleation in a Lennard-Jones Liquid

机译:Lennard-Jones液体中均相成核的分子动力学模拟

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Examination of metastabie states of fluids provides important information pertinent to cavitation and homogeneous nucleation. Homogeneous nucleation, in particular, is an important topic of research. Molecular Dynamics simulation is a well-endorsed method to simulate metastabilitites, as they are limited to mesoscopic scales of length and time and this life-time is essentially zero on a laboratory time scale. In the present study, a molecular dynamics code has been used in conjunction with MOLDY to investigate phase change in a Lennard-Jones liquid. The Lennard-Jones atoms were subjected to different temperatures at various number densities and the pressure was recorded for each case. The appearance of a change of phase is characterized by the formation of clusters or formation of voids as described by the radial distribution function.
机译:流体的转移状态的检查提供了有关空化和均匀成核的重要信息。均匀成核尤其是研究的重要课题。分子动力学模拟是一种公认​​的模拟稳态的方法,因为它们仅限于介观的长度和时间尺度,并且该寿命在实验室时间尺度上基本上为零。在本研究中,分子动力学代码已与MOLDY结合使用,以研究Lennard-Jones液体中的相变。 Lennard-Jones原子以不同的数密度经受不同的温度,并记录每种情况下的压力。相变的出现的特征在于如径向分布函数所描述的团簇的形成或空隙的形成。

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