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Monte Carlo simulations of a polymer chain conformation. The effectiveness of local moves algorithms and estimation of entropy

机译:聚合物链构象的蒙特卡洛模拟。局部移动算法的有效性和熵估计

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摘要

A linear chain on a simple cubic lattice was simulated by the Metropolis Monte Carlo method using a combination of local and non-local chain modifications. Kink-jump, crankshaft, reptation and end-segment moves were used for local changes of the chain conformation, while for non-local chain rearrangements the "cut-and-paste" algorithm was employed. The statistics of local micromodifications was examined. An approximate method for estimating the conformational entropy of a polymer chain, based on the efficiency of the kink-jump motion respecting chain continuity and excluded volume constraints, was proposed. The method was tested by calculating the conformational entropy of the undisturbed chain, the chain under tension and in different solvent conditions (athermal, theta and poor) and also of the chain confined in a slit. The results of these test calculations are qualitatively consistent with expectations. Moreover, the obtained values of the conformational entropy of self avoiding chain with ends fixed over different separations, agree very well with the available literature data.>FigureVisualization of the neighborhood of two local chain microconformations containing a bead (indicated by the arrow) which a) can and b) cannot be moved by the kink-jump. In red there are marked the possible trajectories of chain fragment which can block the adjacent site
机译:通过都市蒙特卡洛方法,使用局部和非局部链修饰的组合,模拟了简单立方晶格上的线性链。扭结跳跃,曲轴,后倾和末端段运动用于链构象的局部变化,而对于非局部链重排,则采用“剪切并粘贴”算法。检查了本地微修改的统计信息。提出了一种基于扭折跳跃运动的效率,考虑链的连续性和排除体积限制的近似方法,用于估算聚合物链的构象熵。通过计算未扰动链,在张力下和在不同溶剂条件(无热,θ和不良)下以及限制在狭缝中的链的构象熵来测试该方法。这些测试计算的结果在质量上与预期一致。而且,获得的自我规避链的构象熵值具有固定在不同间隔上的末端,与现有文献数据非常吻合。<!-fig ft0-> <!-fig @ position =“ anchor”模式=文章f4-> <!-fig mode =“ anchored” f5-> > Figure <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->包含一个珠子的两个局部链微构象的可视化(箭头所示),a)可以和b)不能通过扭结跳动移动。用红色标记可能会阻塞相邻位点的链片段的可能轨迹

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