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Nondielectric long-range solvation of polar liquids in cubic symmetry

机译:立方对称极性液体的非介电远程溶剂化

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Long-range solvation properties of strongly coupled dipolar systems simulated using the Ewald and reaction field methods are assessed by using electric fluctuation formulas for a dielectric medium. Some components of the fluctuating electric multipole moments are suppressed, whereas other components are favored as the boundary of the simulation box is approached. An analysis of electrostatic interactions in a periodic cubic system suggests that these structural effects are due to the periodicity embedded in the Ewald method. Furthermore, the results obtained using the reaction field method are very similar to those obtained using the Ewald method, an effect which we attribute to the use of toroidal boundary conditions in the former case. Thus, the long-range solvation properties of polar liquids simulated using either of the two methods are nondielectric in their character.
机译:通过使用电介质的电波动公式,评估了使用Ewald和反应场方法模拟的强耦合偶极系统的远程溶剂化性能。波动的电多极矩的某些分量得到了抑制,而其他分量则随着接近模拟盒的边界而受到青睐。对周期性立方系统中的静电相互作用的分析表明,这些结构效应是由于Ewald方法中嵌入的周期性引起的。此外,使用反应场方法获得的结果与使用Ewald方法获得的结果非常相似,在前一种情况下,我们将这种效果归因于使用环形边界条件。因此,使用两种方法中的任何一种模拟的极性液体的远程溶剂化特性在特性上都是非介电的。

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