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Melts of nonconcatenated rings in spherical confinement

机译:球形监禁中的非催化环熔化

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摘要

Motivated by the chromosomes enclosed in a cell nucleus, we study a spherically confined system of a small number of long unknotted and nonconcatenated polymer rings in a melt and systematically compare it with the bulk results. We find that universal scaling exponents of the bulk system also apply in the confined case; however, certain important differences arise. First, due to confinement effects, the static and threading properties of the rings depend on their radial position within the confining sphere. Second, the rings' dynamics is overall subdiffusive, but anisotropic along the directions parallel and perpendicular to the sphere's radius. The radial center of mass displacements of the rings are in general much smaller than the angular ones, which is caused by the confinement-induced inhomogeneous radial distribution of the whole rings within the sphere. Finally, we find enhanced contact times between rings as compared to the bulk, which indicates slow and predominantly coordinated pathways of the relaxation of the system.
机译:通过封闭在细胞核中的染色体的激励,我们研究了熔体中少量较长的较长的较长的和非催化聚合物环的球形狭窄的系统,并系统地将其与大量结果进行了比较。我们发现批量系统的通用扩展指数也适用于受限案例;但是,出现了某些重要差异。首先,由于限制效果,环的静态和螺纹特性取决于它们在限制球内的径向位置。其次,环'动态是总体沉降的,而是沿着平行和垂直于球体的半径的方向各向异性。环的质量位移的径向中心通常小于角度,这是由球体内整个环的限制诱导的不均匀径向分布引起的。最后,与批量相比,我们发现环之间的增强的联系时间,这表明系统松弛的缓慢和主要的协调途径。

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