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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Calculation of effective interaction potentials from radial distribution functions: A reverse Monte Carlo approach
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Calculation of effective interaction potentials from radial distribution functions: A reverse Monte Carlo approach

机译:从径向分布函数计算有效相互作用势:反向蒙特卡洛方法

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An approach is presented to solve the reverse problem of statistical mechanics: reconstruction of interaction potentials from radial distribution functions. The method consists of the iterative adjustment of the interaction potential to known radial distribution functions using a Monte Carlo simulation technique and statistical-mechanics relations to connect deviations of canonical averages with Hamiltonian parameters. The method is applied to calculate the effective interaction potentials between the ions in aqueous NaCl solutions at two different concentrations. The reference ion-ion radial distribution functions, calculated in separate molecular dynamics simulations with water molecules, are reproduced in Monte Carlo simulations, using the effective interaction potentials for the hydrated ions. Application of the present method should provide an effective and economical way to simulate equilibrium properties for very large molecular systems (e.g., polyelectrolytes) in the presence of hydrated ions, as well as to offer an approach to reduce a complexity in studies of various associated and aggregated systems in solution.
机译:提出了一种解决统计力学问题的方法:从径向分布函数重建相互作用势。该方法包括使用蒙特卡罗(Monte Carlo)模拟技术和统计力学关系将相互作用势迭代调整为已知的径向分布函数,以将规范平均数的偏差与汉密尔顿参数联系起来。该方法适用于计算两种不同浓度的NaCl水溶液中离子之间的有效相互作用电势。使用水合离子的有效相互作用势,在蒙特卡洛模拟中复制了在单独的水分子分子动力学模拟中计算的参考离子离子径向分布函数。本方法的应用应提供一种有效且经济的方式,以在存在水合离子的情况下模拟非常大的分子系统(例如,聚电解质)的平衡性质,并应提供一种降低各种相关和复杂的研究复杂性的方法。解决方案中的聚合系统。

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