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Pressure control in interfacial systems: Atomistic simulations of vapor nucleation

机译:界面系统中的压力控制:蒸气成核的原子模拟

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摘要

A large number of phenomena of scientific and technological interest involve multiple phases and occur at constant pressure of one of the two phases, e.g., the liquid phase in vapor nucleation. It is therefore of great interest to be able to reproduce such conditions in atomistic simulations. Here we study how popular barostats, originally devised for homogeneous systems, behave when applied straightforwardly to heterogeneous systems. We focus on vapor nucleation from a super-heated Lennard-Jones liquid, studied via hybrid restrained Monte Carlo simulations. The results show a departure from the trends predicted for the case of constant liquid pressure, i.e., from the conditions of classical nucleation theory. Artifacts deriving from standard (global) barostats are shown to depend on the size of the simulation box. In particular, for Lennard-Jones liquid systems of 7000 and 13 500 atoms, at conditions typically found in the literature, we have estimated an error of 10-15 k(B)T on the free-energy barrier, corresponding to an error of 10(4)-10(6) s(-1)sigma(-3) on the nucleation rate. A mechanical (local) barostat is proposed which heals the artifacts for the considered case of vapor nucleation. (c) 2018 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
机译:大量的科技利益现象涉及多个阶段,并且在两相之一的恒定压力下发生,例如,蒸气成核中的液相。因此,能够在原子模拟中重现这种情况非常关注。在这里,我们研究了最初设计为均匀系统的Barostats,在异构系统上直接应用时表现出来的流行。我们专注于通过混合束缚的蒙特卡罗模拟研究了从超级加热的Lennard-Jones液体的蒸气核。结果表明,从恒​​定液体压力的情况下预测的趋势,即,从古典成核理论的条件下偏离。从标准(全局)Barostats中得出的伪影显示在仿真框的大小上。特别是,对于7000和13 500原子的Lennard-Jones液体系统,在文献中通常在文献中发现的条件,我们估计了对应于自由能屏障的10-15k(b)T的误差,对应于误差10(4)-10(6)秒(-1)σ(-3)核切割率。提出了一种机械(局部)Barostat,其愈合了所考虑的蒸气成核案例的伪影。 (c)2018年作者。除其他否则指出的情况外,所有文章内容都是根据Creative Commons atjection(CC)许可证的许可(http://creativecommons.org/licenses/by/4.0/)。

著录项

  • 来源
    《The Journal of Chemical Physics》 |2018年第6期|共10页
  • 作者单位

    Univ Roma Sapienza Dipartimento Ingn Meccan &

    Aerosp Via Eudossiana 18 I-00184 Rome Italy;

    Univ Roma Sapienza Dipartimento Ingn Meccan &

    Aerosp Via Eudossiana 18 I-00184 Rome Italy;

    Univ Roma Sapienza Dipartimento Ingn Meccan &

    Aerosp Via Eudossiana 18 I-00184 Rome Italy;

    Univ Complutense Madrid Dept Estruct Mat Fis Term &

    Elect Ave Complutense E-28040 Madrid Spain;

    Univ Roma Sapienza Dipartimento Ingn Meccan &

    Aerosp Via Eudossiana 18 I-00184 Rome Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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