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Fragment-based quantum mechanical methods for periodic systems with Ewald summation and mean image charge convention for long-range electrostatic interactions

机译:用于与埃瓦尔德求和与平均图像电荷约定周期系统用于基于片段的量子机械方法远距离静电相互作用

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摘要

We describe an Ewald-summation method to incorporate long-range electrostatic interactions into fragment-based electronic structure methods for periodic systems. The present method is an extension of the particle-mesh Ewald technique for combined quantum mechanical and molecular mechanical (QM/MM) calculations, and it has been implemented into the explicit polarization (X-Pol) potential to illustrate the computational details. As in the QM/MM-Ewald method, the X-Pol-Ewald approach is a linear-scaling electrostatic method, in which the short-range electrostatic interactions are determined explicitly in real space and the long-range Ewald pair potential is incorporated into the Fock matrix as a correction. To avoid the time-consuming Fock matrix update during the self-consistent field procedure, a mean image charge (MIC) approximation is introduced, in which the running average with a user-chosen correlation time is used to represent the long-range electrostatic correction as an average effect. Test simulations on liquid water show that the present X-Pol-Ewald method takes about 25% more CPU time than the usual X-Pol method using spherical cutoff, whereas the use of the MIC approximation reduces the extra costs for long-range electrostatic interactions by 15%. The present X-Pol-Ewald method provides a general procedure for incorporating long-range electrostatic effects into fragment-based electronic structure methods for treating biomolecular and condensed-phase systems under periodic boundary conditions.
机译:我们描述了一种ewald-sumpation方法,将远程静电相互作用掺入周期系统的基于片段的电子结构方法。本方法是用于组合量子机械和分子机械(QM / mm)计算的粒子网eWALD技术的延伸,并且已经实现成显式极化(X-POL)电位,以说明计算细节。与QM / MM-EWALD方法一样,X-POL-EWALD方法是一种线性缩放静电方法,其中短程静电相互作用在实际空间中明确地确定,并将远程EWALD对电位纳入其中fock矩阵作为校正。为了避免在自我一致性场过程期间耗时的耗时的Fock矩阵更新,引入了平均图像电荷(MIC)近似,其中使用具有用户选择的相关时间的运行平均值来表示远程静电校正作为平均效果。液态水测试模拟表明,目前X-POL-EWALD方法比使用球形截止的通常X-POL方法需要大约25%的CPU时间,而MIC近似值降低了远程静电相互作用的额外成本15%。本X-POL-EWALD方法提供了将远程静电效应掺入基于片段的电子结构方法的一般方法,用于在周期性边界条件下处理生物分子和冷凝相系统。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(14),21
  • 年度 -1
  • 页码 7821–7829
  • 总页数 18
  • 原文格式 PDF
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  • 入库时间 2022-08-21 11:24:31

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