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Phase equilibria of the modified Buckingham exponential-6 potential from Hamiltonian scaling grand canonical Monte Carlo

机译:汉密尔顿尺度大正则蒙特卡罗修正后的白金汉指数6势的相平衡

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摘要

A novel method, Hamiltonian scaling grand canonical Monte Carlo, has been used to determine the phase behavior of 12 variations of the modified Buckingham exponential-6 potential. Hamiltonian scaling grand canonical Monte Carlo enables the determination of thermodynamic properties of several related potential models from a single set of simulations. The main advantage of the method is that by appropriate selection of the chemical potential and temperature for each Hamiltonian, the densities that are sampled are relevant for multiple Hamiltonians, thus increasing the simulation efficiency. The method was combined with mixed-field finite-size scaling to determine the critical parameters and phase coexistence curves of several modified Buckingham exponential-6 potentials to a high level of accuracy. In particular, the critical parameters of the models have been calculated to within 0.3% for the critical temperature and 1% for the critical density and pressure. A new potential;for methane based on the Buckingham exponential-6 model is presented. The vapor pressure curve of methane from the Buckingham exponential-6 potential model is much more accurate than is possible with the Lennard-Jones potential model. (C) 1998 American Institute of Physics. [References: 33]
机译:一种新的方法,即哈密顿量表缩放的大正则蒙特卡罗方法,已被用来确定经修正的白金汉指数6势的12个变化的相位行为。借助哈密顿量级的大正则蒙特卡罗方法,可以从一组模拟中确定几个相关电势模型的热力学性质。该方法的主要优点是,通过为每个哈密顿量适当选择化学势和温度,采样的密度与多个哈密顿量有关,从而提高了仿真效率。该方法与混合场有限尺寸缩放相结合,以高精度确定几种修饰的白金汉指数6势的临界参数和相位共存曲线。特别是,模型的关键参数对于关键温度计算为0.3%以内,对于临界密度和压力计算为1%以内。提出了一种基于白金汉指数六模型的甲烷新潜力。白金汉指数6势模型的甲烷蒸气压曲线比Lennard-Jones势模型更精确。 (C)1998美国物理研究所。 [参考:33]

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