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Interplay between writhe and knotting for swollen and compact polymers

机译:缠绕和打结之间的相互作用,使溶胀的致密聚合物

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The role of the topology and its relation with the geometry of biopolymers under different physical conditions is a nontrivial and interesting problem. Aiming at understanding this issue for a related simpler system, we use Monte Carlo methods to investigate the interplay between writhe and knotting of ring polymers in good and poor solvents. The model that we consider is interacting self-avoiding polygons on the simple cubic lattice. For polygons with fixed knot type, we find a writhe distribution whose average depends on the knot type but is insensitive to the length N of the polygon and to solvent conditions. This “topological contribution” to the writhe distribution has a value that is consistent with that of ideal knots. The standard deviation of the writhe increases approximately as 1/N in both regimes, and this constitutes a geometrical contribution to the writhe. If the sum over all knot types is considered, the scaling of the standard deviation changes, for compact polygons, to ~N~(0.6). We argue that this difference between the two regimes can be ascribed to the topological contribution to the writhe that, for compact chains, overwhelms the geometrical one, thanks to the presence of a large population of complex knots at relatively small values of N. For polygons with fixed writhe, we find that the knot distribution depends on the chosen writhe, with the occurrence of achiral knots being considerably suppressed for large writhe. In general, the occurrence of a given knot thus depends on a nontrivial interplay between writhe, chain length, and solvent conditions.
机译:在不同的物理条件下,拓扑的作用及其与生物聚合物的几何结构的关系是一个重要的问题。为了了解一个相关的更简单系统的问题,我们使用蒙特卡洛方法研究了在良好和不良溶剂中环状聚合物的扭曲和打结之间的相互作用。我们考虑的模型是在简单立方晶格上相互作用自避免多边形。对于具有固定结类型的多边形,我们发现其分布取决于其结类型但平均值对多边形的长度N和溶剂条件不敏感。这种对拓扑分布的“拓扑贡献”的值与理想结的值一致。在两种情况下,旋扭的标准偏差大约增加为1 / N,这构成了旋扭的几何形状。如果考虑所有结类型的总和,则对于紧凑多边形,标准偏差的缩放比例将更改为〜N〜(0.6)。我们认为,两种状态之间的这种差异可以归因于拓扑的贡献,即对于紧凑链,由于存在大量的相对N值较小的复杂结,使得几何链不堪重负。使用固定的旋扭,我们发现结的分布取决于所选的旋扭,对于大旋扭,非手性节的出现被大大抑制了。因此,通常,给定结的发生取决于旋扭,链长和溶剂条件之间的重要相互作用。

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