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Topological and geometrical entanglement in a model of circular NA undergoing denaturation

机译:圆形NA经历变性的模型中的拓扑和几何纠缠。

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The linking number (topological entanglement) and the writhe (geometrical entanglement) of a model of circular double stranded DNA undergoing a thermal denaturation transition are investigated by Monte Carlo simulations. By allowing the linking number to fluctuate freely in equilibrium we see that the linking probability undergoes an abrupt variation (first-order) at the denaturation transition, and stays close to 1 in the whole native phase. The average linking number is almost zero in the denatured phase and grows as the square root of the chain length, N, in the native phase. The writhe of the two strans grows as N~(1/2) in both phases.
机译:通过蒙特卡洛模拟研究了圆形双链DNA经历热变性转变的模型的连接数(拓扑缠结)和扭曲(几何缠结)。通过使链接数在平衡中自由波动,我们看到链接概率在变性转变时经历突变(一阶),并在整个自然相中保持接近1。在变性阶段,平均连接数几乎为零,而在原始阶段,平均连接数随链长N的平方根增长。在两个阶段中,两个strans的缠绕度都以N〜(1/2)的形式增长。

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