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The variational explicit polarization potential and analytical first derivative of energy: Towards a next generation force field

机译:显性变分极化势和能量的解析一阶导数:朝向下一代力场

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摘要

A previous article proposed an electronic structure-based polarizable potential, called the explicit polarization (X-POL) potential, to treat many-body polarization and charge delocalization effects in polypeptides. Here, we present a variational version of the X-POL potential, in which the wave function of the entire molecular system is variationally optimized to yield the minimum total electronic energy. This allows the calculation of analytic gradients, a necessity for efficient molecular dynamics simulations. In this paper, the detailed derivations of the Fock matrix and analytic force are presented and discussed. The calculations involve a double self-consistent-field procedure in which the wave function of each fragment is self-consistently optimized in the presence of other fragments, and in addition the polarization of the entire system is self-consistently optimized. The variational X-POL potential has been implemented in the Chemistry at Harvard Molecular Mechanics (CHARMM) package and tested successfully for small model compounds.
机译:先前的文章提出了一种基于电子结构的可极化电位,称为显性极化(X-POL)电位,用于治疗多肽中的多体极化和电荷离域效应。在这里,我们介绍了X-POL电位的变体形式,其中整个分子系统的波函​​数经过变体优化以产生最小的总电子能。这允许计算分析梯度,这是有效的分子动力学模拟的必要条件。本文介绍并讨论了Fock矩阵的详细推导和解析力。该计算涉及双重自洽场过程,其中每个片段的波函数在存在其他片段时被自洽优化,此外,整个系统的极化也被自洽优化。 X-POL变异电位已在哈佛大学分子力学(CHARMM)软件包的化学中实现,并已成功测试了小模型化合物。

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