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首页> 外文期刊>The Journal of Chemical Physics >Calculation of free-energy differences and potentials of mean force by a multi-energy gap method
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Calculation of free-energy differences and potentials of mean force by a multi-energy gap method

机译:用多能隙法计算自由能差和平均力势

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摘要

A method is proposed to significantly accelerate the convergence of free-energy calculations. It introduces a bias factor in Monte Carlo simulations or, equivalently, a bias force in molecular dynamics simulations. The bias factor targets the energy gap, i.e., the difference in energy function between two states, and is therefore specifically designed for calculating free-energy differences. The goal is to make the probability density of the energy gap as uniform as possible, thus allowing for its accurate determination. An iterative procedure, based on simulations at higher temperatures, is devised to obtain the bias factor. The same method naturally extends to the calculation of potentials of mean force. The generalized coordinate, for which the potential of mean force is to be calculated, now plays the role of the energy gap. Applications to model systems confirm the expected increase in accuracy of calculated free-energy differences and potentials of mean force. (c) 2008 American Institute of Physics.
机译:提出了一种显着加速自由能计算收敛的方法。它在蒙特卡洛模拟中引入了一个偏置因子,或者在分子动力学模拟中引入了一个等效力。偏置因子的目标是能隙,即两个状态之间的能量函数差,因此专门设计用于计算自由能差。目的是使能隙的概率密度尽可能均匀,从而使其能够准确确定。设计了一种基于较高温度下的仿真的迭代过程来获得偏差因子。相同的方法自然会扩展到平均力势的计算。现在,要为其计算平均力潜力的广义坐标起着能隙的作用。模型系统的应用证实了计算出的自由能差和平均力势的预期精度的提高。 (c)2008年美国物理研究所。

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