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A multiple chain Monte Carlo method for atomistic simulation of high molecular weight polymer melts

机译:用于高分子聚合物熔体原子模拟的多链蒙特卡罗方法

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A new Monte Carlo method is proposed for the simulation of bulk systems of atomistically detailed polymers. Each move consists of a configurational rearrangement of the atoms in a specified region of the material, rather than a specified molecule. Thus atoms within different chains may be displaced cooperatively in each Monte Carlo move. Here, the method is implemented for the case of melts of linear chains, where the bond lengths and bond angles are held constant during the move. The performance of the algorithm is examined for linear polyethylene systems with chain lengths of 100 and 1000 backbone atoms, under a range of conditions. The method shows a considerable potential as a very general and flexible tool for stimulating realistic polymer materials, subject to a number of performances limiting factors which are described in detail.
机译:提出了一种新的蒙特卡洛方法,用于模拟原子详细的聚合物的本体系统。每个移动都由材料的指定区域(而不是指定的分子)中原子的构型重排组成。因此,在每个蒙特卡洛运动中,不同链中的原子可以协同移动。在此,该方法是针对线性链的熔体实施的,其中在移动过程中,键长和键角保持恒定。在一定条件下,对链长为100和1000个主链原子的线性聚乙烯系统,检查了算法的性能。该方法显示出巨大的潜力,作为刺激实际聚合物材料的非常通用和灵活的工具,但要受到许多性能限制因素的影响,这些因素将在下文中详细描述。

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