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首页> 外文期刊>The Journal of Chemical Physics >Isotropic periodic sum: A method for the calculation of long-range interactions
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Isotropic periodic sum: A method for the calculation of long-range interactions

机译:各向同性周期总和:一种计算长程相互作用的方法

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This work presents an accurate and efficient approach to the calculation of long-range interactions for molecular modeling and simulation. This method defines a local region for each particle and describes the remaining region as images of the local region statistically distributed in an isotropic and periodic way, which we call isotropic periodic images. Different from lattice sum methods that sum over discrete lattice images generated by periodic boundary conditions, this method sums over the isotropic periodic images to calculate long-range interactions, and is referred to as the isotropic periodic sum (IPS) method. The IPS method is not a lattice sum method and eliminates the need for a reciprocal space sum. Several analytic solutions of IPS for commonly used potentials are presented. It is demonstrated that the IPS method produces results very similar to that of Ewald summation, but with three major advantages, (1) it eliminates unwanted symmetry artifacts raised from periodic boundary conditions, (2) it can be applied to potentials of any functional form and to fully and partially homogenous systems as well as finite systems, and (3) it is more computationally efficient and can be easily parallelized for multiprocessor computers. Therefore, this method provides a general approach to an efficient calculation of long-range interactions for various kinds of molecular systems. (C) 2005 American Institute of Physics.
机译:这项工作提出了一种精确有效的方法,用于分子模型和模拟的远程相互作用的计算。该方法为每个粒子定义一个局部区域,并将其余区域描述为以各向同性和周期性方式统计分布的局部区域图像,我们称其为各向同性周期性图像。与对通过周期性边界条件生成的离散晶格图像求和的晶格求和方法不同,此方法对各向同性周期图像求和以计算远程交互作用,被称为各向同性周期求和(IPS)方法。 IPS方法不是晶格和方法,不需要互易的空间和。介绍了几种针对常用电势的IPS解析解决方案。证明IPS方法产生的结果与Ewald求和的结果非常相似,但是具有三个主要优点:(1)消除了由于周期性边界条件引起的不必要的对称假象,(2)可以应用于任何函数形式的电势(3)它的计算效率更高,并且对于多处理器计算机可以很容易地并行化。因此,该方法为有效计算各种分子系统的远程相互作用提供了一种通用方法。 (C)2005美国物理研究所。

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