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An iterative, fast, linear-scaling method for computing induced charges on arbitrary dielectric boundaries

机译:一种迭代,快速,线性缩放的方法,用于计算任意介质边界上的感应电荷

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摘要

Simulating coarse-grained models of charged soft-condensed matter systems in presence of dielectric discontinuities between different media requires an efficient calculation of polarization effects. This is almost always the case if implicit solvent models are used near interfaces or large macromolecules. We present a fast and accurate method ICC that allows to simulate the presence of an arbitrary number of interfaces of arbitrary shape, each characterized by a different dielectric permittivity in one-, two-, and three-dimensional periodic boundary conditions. The scaling behavior and accuracy of the underlying electrostatic algorithms allow to choose the most appropriate scheme for the system under investigation in terms of precision and computational speed. Due to these characteristics the method is particularly suited to include nonplanar dielectric boundaries in coarse-grained molecular dynamics simulations.
机译:在不同介质之间存在介电不连续的情况下,模拟带电软凝聚物系统的粗粒度模型需要有效地计算极化效应。如果在界面或大分子附近使用隐式溶剂模型,几乎总是这样。我们提出了一种快速,准确的方法ICC,它可以模拟任意形状的任意数量的界面的存在,每个界面的特征在于在一维,二维和三维周期性边界条件下的介电常数不同。潜在的静电算法的缩放行为和精确度允许根据精度和计算速度为正在研究的系统选择最合适的方案。由于这些特性,该方法特别适合在粗粒度分子动力学模拟中包括非平面介电边界。

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