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Electrostatic potential inside ionic solutions confined by dielectrics: a variational approach

机译:受电介质限制的离子溶液内部的静电势:一种变分方法

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This paper provides a pedagogical introduction to a variational formulation of electrostatic interactions between free charges close to a dielectric interface. A functional is constructed which, upon minimization, yields a polarization charge density h(r) which satisfies the usual laws of electrostatics. The initial functional of a volume charge density is shown to reduce to a functional of a surface polarization charge density when the interface between dielectrics is sharp. The variational procedure is first shown to provide an elegant systematic solution in cases with very simple geometries, for which analytic solutions are well known. Numerical implementations of the variational procedure using adequate grids are tested against exact results, in the perspective of applying the method to geometrically more complex situations, like ion channels through membranes, which are well beyond analytic treatment. Contact is made with related work on the solvation of biomolecules, based on a functional of the polarization itself. The relative advantages and shortcomings of the two formulations are briefly discussed. [References: 32]
机译:本文为靠近介电界面的自由电荷之间的静电相互作用的变化公式提供了教学法介绍。构造一种功能,该功能在最小化时产生满足静电的通常定律的极化电荷密度h(r)。当电介质之间的界面很尖锐时,体积电荷密度的初始函数显示为减小到表面极化电荷密度的函数。首先显示了变分程序,在几何非常简单的情况下,它提供了一种优雅的系统解决方案,对此,解析解决方案是众所周知的。从将方法应用于几何上更复杂的情况(例如穿过膜的离子通道)的角度来看,使用适当的网格对变过程的数值实现进行了精确结果测试,这远远超出了分析处理的范围。根据极化本身的功能,与生物分子的溶剂化相关工作进行了联系。简要讨论了两种配方的相对优点和缺点。 [参考:32]

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