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The FADE mass-stat: A technique for inserting or deleting particles in molecular dynamics simulations

机译:FADE质量统计:一种在分子动力学模拟中插入或删除粒子的技术

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The emergence of new applications of molecular dynamics (MD) simulation calls for the development of mass-statting procedures that insert or delete particles on-the-fly. In this paper we present a new mass-stat which we term FADE, because it gradually "fades-in" (inserts) or "fades-out" (deletes) molecules over a short relaxation period within a MD simulation. FADE applies a time-weighted relaxation to the intermolecular pair forces between the inserting/deleting molecule and any neighbouring molecules. The weighting function we propose in this paper is a piece-wise polynomial that can be described entirely by two parameters: the relaxation time scale and the order of the polynomial. FADE inherently conserves overall system momentum independent of the form of the weighting function. We demonstrate various simulations of insertions of atomic argon, polyatomic TIP4P water, polymer strands, and C_(60) Buckminsterfullerene molecules.We propose FADE parameters and a maximum density variation per insertion-instance that restricts spurious potential energy changes entering the system within desired tolerances. We also demonstrate in this paper that FADE compares very well to an existing insertion algorithm called USHER, in terms of accuracy, insertion rate (in dense fluids), and computational efficiency. The USHER algorithm is applicable to monatomic and water molecules only, but we demonstrate that FADE can be generally applied to various forms and sizes of molecules, such as polymeric molecules of long aspect ratio, and spherical carbon fullerenes with hollow interiors.
机译:分子动力学(MD)模拟新应用程序的出现要求开发能即时插入或删除粒子的质量鉴定程序。在本文中,我们提出了一种称为FADE的新质量统计,因为它在MD模拟中的短弛豫时间内逐渐“淡入”(插入)或“淡出”(删除)分子。 FADE对插入/删除分子与任何相邻分子之间的分子间对力施加时间加权松弛。我们在本文中提出的加权函数是一个分段多项式,可以完全由两个参数来描述:松弛时间标度和多项式的阶数。 FADE固有地节省了整个系统动量,而与加权函数的形式无关。我们演示了原子氩,多原子TIP4P水,聚合物链和C_(60)Buckminsterfullerene分子插入的各种模拟。 。在准确性,插入率(在稠密流体中)和计算效率方面,我们还证明了FADE与现有的称为USHER的插入算法相比非常好。 USHER算法仅适用于单原子和水分子,但我们证明FADE通常可应用于各种形式和大小的分子,例如长径比大的聚合物分子和具有中空内部的球形碳富勒烯。

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