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Effective force fields for condensed phase systems from ab initio molecular dynamics simulation:A new method for force-matching

机译:从头算分子动力学模拟得出的凝聚相系统有效力场:一种新的力匹配方法

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摘要

A novel least-squares fitting approach is presented to obtain classical force fields from trajectory and force databases produced by ab initio (e.g.,Car-Parrinello) molecular dynamics (MD) simulations.The method was applied to derive effective nonpolarizable three-site force fields for liquid water at ambient conditions from Car-Parrinello MD simulations in the Becke-Lee-Yang-Parr approximation to the electronic density functional theory.The force-matching procedure includes a fit of short-ranged nonbonded forces,bonded forces,and atomic partial charges.The various parameterizations of the water force field differ by an enforced smooth cut-off applied to the short-ranged interaction term.These were obtained by fitting to the trajectory and force data produced by Car-Parrinello MD simulations of systems of 32 and 64H_2O molecules.The new water force fields were developed assuming both flexible or rigid molecular geometry.The simulated structural and self-diffusion properties of liquid water using the fitted force fields are in close agreement with those observed in the underlying Car-Parrinello MD simulations.The resulting empirical models compare to experiment much better than many conventional simple point charge (SPC) models.The fitted potential is also shown to combine well with more sophisticated intramolecular potentials.Importantly,the computational cost of the new models is comparable to that for SPC-like potentials.
机译:提出了一种新颖的最小二乘拟合方法,以从由头算(例如,Car-Parrinello)分子动力学(MD)模拟产生的轨迹和力数据库中获得经典力场。该方法用于推导有效的非极化三点力场通过在Becke-Lee-Yang-Parr近似中的Car-Parrinello MD模拟到电子密度泛函理论研究环境条件下的液态水。水力场的各种参数设置因应用于短程相互作用项的强制平滑截止而有所不同,它们是通过拟合由32个系统的Car-Parrinello MD模拟产生的轨迹和力数据获得的64H_2O分子。在假定分子结构灵活或刚性的情况下开发了新的水力场。液体w的模拟结构和自扩散特性使用拟合力场的结果与在基础的Car-Parrinello MD模拟中观察到的结果非常吻合,与许多传统的简单点电荷(SPC)模型相比,所得的经验模型与实验相比要好得多。重要的是,新模型的计算成本与类SPC势的计算成本相当。

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