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首页> 外文期刊>The Journal of Chemical Physics >Non-Hamiltonian molecular dynamics implementation of the Gibbs ensemble method.II.Molecular liquid-vapor results for carbon dioxide
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Non-Hamiltonian molecular dynamics implementation of the Gibbs ensemble method.II.Molecular liquid-vapor results for carbon dioxide

机译:吉布斯系综法的非哈密顿分子动力学实现方法II。二氧化碳的分子液汽结果

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The Gibbs ensemble molecular dynamics algorithm introduced in the preceding paper (paper I) [C.Bratschi and H.Huber,J.Chem.Phys.v 126,164104 (2007)] is applied to two recently published CO2 ab initio pair potentials,the Bock-Bich-Vogel and symmetry-adapted perturbation theory site-site potentials.The critical properties of these potentials are calculated for the first time.Critical values and points in the single and two-phase zones are compared with Monte Carlo results to demonstrate the accuracy of the molecular dynamics algorithm,and are compared with experiment to test the accuracy of the potentials.Pressure calculations in the liquid,gas,and supercritical states are carried out and are used to explain potential-related effects and systematic discrepancies.The best ab initio potential yields results in good agreement with experiment.
机译:先前论文(论文I)[C.Bratschi and H.Huber,J.Chem.Phys.v 126,164104(2007)]中介绍的Gibbs集成分子动力学算法被应用于最近发布的两个CO2从头算对电位,首次计算了这些电位的临界性质,将单相和两相区的临界值和临界点与蒙特卡洛结果进行了比较,以证明这些电位的临界性质分子动力学算法的精度,并与实验进行比较以检验电势的准确性。进行了液体,气体和超临界状态下的压力计算,并用来解释电势相关的影响和系统差异。从头开始的潜在产量与实验结果吻合良好。

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