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Monte Carlo simulation of a single ring among linear chains: Structural and dynamic heterogeneity

机译:线性链中单个环的蒙特卡洛模拟:结构和动态异质性

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We perform lattice Monte Carlo simulation using the bond-fluctuation model to examine the conformation and dynamic properties of a single small flexible ring polymer in the matrix of linear chains as functions of the degree of polymerization of the linear chains. The average conformation properties as gauged by the mean-square radius of gyration and asphericity parameter are insensitive to the chain length for all the chain lengths examined (30, 100, 300, and 1000). However, in the longer chain (300 and 1000) samples, there is an increased spread in the distribution of the value of these quantities, suggesting structural heterogeneity. The center-of-mass diffusion of the ring shows a rapid decrease with increasing chain length followed by a more gradual change for the two longer chain systems. In these longer chain systems, a wide spread in the value of the apparent self-diffusion coefficient is also observed, as well as qualitatively different square displacement trajectories among the different samples, suggesting heterogeneity in the dynamics. A primitive path analysis reveals that in these long chain systems, the ring can exist in topologically distinct states with respect to threading by the linear chains. Threading by the linear chain can dramatically slow down and in some cases stall the diffusive motion of the ring. We argue that the life times for these topological conformers can be longer than the disentanglement time of the linear chain matrix, so that the ring exhibits nonergodic behavior on time scales less or comparable to the life time of these conformers. Our results suggest a picture of the ring diffusion as one where the diffusion path consists of distinctive segments, each corresponding to a different conformer, with slow interconversion between the different conformers.
机译:我们使用键涨落模型执行晶格蒙特卡罗模拟,以检查线性链基质中单个小柔性环聚合物的构象和动力学性质,这是线性链聚合度的函数。对于所有检查的链长(30、100、300和1000),由均方回转半径和非球面度参数衡量的平均构象特性对链长不敏感。但是,在较长链(300个和1000个)的样本中,这些数量的值的分布范围增加了,这表明结构存在异质性。环的质心扩散显示随着链长的增加而迅速减小,随后是两个较长链系统的逐渐变化。在这些较长的链系统中,还观察到表观自扩散系数值的广泛分布,以及不同样本之间在质量上不同的平方位移轨迹,这表明动力学存在异质性。原始路径分析显示,在这些长链系统中,相对于线性链的穿环,环可能以拓扑上不同的状态存在。线性链的穿线会大大减慢速度,并且在某些情况下会阻止环的扩散运动。我们认为,这些拓扑构象异构体的寿命可能比线性链矩阵的解缠时间更长,因此环在比这些构象异构体的寿命更短或相当的时间尺度上表现出非遍历行为。我们的结果表明,环扩散的情况是,扩散路径由不同的片段组成,每个片段对应于一个不同的构象异构体,不同构象异构体之间的转化缓慢。

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