论文标题

径向对电位近似的功效对于致密等离子体的分子动力学模拟

Efficacy of the Radial Pair Potential Approximation for Molecular Dynamics Simulations of Dense Plasmas

论文作者

Stanek, Lucas J., Clay III, Raymond C., Dharma-wardana, M. W. C., Wood, Mitchell A., Beckwith, Kristian R. C., Murillo, Michael S.

论文摘要

致密等离子体的宏观模拟取决于可能在计算上很昂贵且难以通过实验验证的详细微观信息。在这项工作中,我们通过比较Kohn-Sham密度功能理论分子动力学(KS-MD)和径向对电位分子动力学(RPP-MD)来描述微观模拟方法之间的精度边界,以范围元素,温度和密度。通过使用力匹配从KS-MD数据中提取最佳RPP,我们限制了其功能形式,并消除了对小颗粒间距离的恒定功率定律的电势类别。我们的结果表明,RPP-MD和KS-MD在仅几个电子伏特的温度下的多个准确性指标之间具有极好的一致性。 RPP的使用提供了计算成本下降的数量级,并表明超出了几个EV的温度不需要三体电位。由于其效率,经过验证的RPP-MD为减少错误的途径提供了有限尺寸效果的途径,该效果可以按照$ \ sim20 \%$的订单。

Macroscopic simulations of dense plasmas rely on detailed microscopic information that can be computationally expensive and is difficult to verify experimentally. In this work, we delineate the accuracy boundary between microscale simulation methods by comparing Kohn-Sham density functional theory molecular dynamics (KS-MD) and radial pair potential molecular dynamics (RPP- MD) for a range of elements, temperature, and density. By extracting the optimal RPP from KS-MD data using force-matching, we constrain its functional form and dismiss classes of potentials that assume a constant power law for small interparticle distances. Our results show excellent agreement between RPP-MD and KS-MD for multiple metrics of accuracy at temperatures of only a few electron volts. The use of RPPs offers orders of magnitude decrease in computational cost and indicates that three-body potentials are not required beyond temperatures of a few eV. Due to its efficiency, the validated RPP-MD provides an avenue for reducing errors due to finite-size effects that can be on the order of $\sim20\%$.

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