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首页> 外文期刊>The European physical journal, E. Soft matter >The coherent scattering function of the reptation model: Simulations compared to theory
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The coherent scattering function of the reptation model: Simulations compared to theory

机译:表示模型的相干散射函数:与理论相比的仿真

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We present results of Monte Carlo simulations measuring the coherent structure function of a chain moving through an ordered lattice of fixed topological obstacles. Our computer experiments use chains up to 320 beads and cover a large range of wave vectors and a time range exceeding the reptation time. For additional information we also measured the coherent structure function of internal pieces of the chain. We compare our results i) to the predictions of the primitive chain model, ii) to an approximate form resulting from Rouse motion in a coiled tube, and iii) to our recent evaluation of the full reptation model. i) The primitive chain model can fit the data for times t≥20T_2 , where T_2 is the Rouse time of the chain. Besides some phenomenological amplitude factor this fit involves the reptation time T_3 as a second fit parameter. For the chain lengths measured, the asymptotic behavior is not attained. ii) The model of Rouse motion in a tube, which we have criticized before on theoretical grounds, is shown to fail also on the purely phenomenological level. iii) Our evaluation of the full reptation model yields an excellent fit to the data for both total chains and internal pieces and for all wave vectors and all times, provided specific micro-structure effects of the MC dynamics are negligible. Such micro-structure effects show up for wave vectors of the order of the inverse segment size and enforce the introduction of some phenomenological, wave-vector-dependent prefactor. For the dynamics of the total chain our data analysis based on the full reptation model shows the importance of tube length fluctuations. Universal (Rouse-type) internal relaxation, however, is unimportant. It can be observed only in the form of the diffusive motion of a short central subchain in the tube. Finally, we present a fit formula which in a large range of wave vectors and chain lengths reproduces the numerical results of our theory for the scattering from the total chain.
机译:我们介绍了蒙特卡洛模拟的结果,该结果测量了通过固定拓扑障碍的有序晶格移动的链的相干结构函数。我们的计算机实验使用多达320个磁珠的链,涵盖了大范围的波矢,并且时间范围超过了复制时间。有关其他信息,我们还测量了链内部各部分的相干结构功能。我们将结果i)与原始链模型的预测进行比较,ii)与由螺旋管中的Rouse运动产生的近似形式进行比较,并且iii)与我们对完整复制模型的最新评估进行比较。 i)原始链模型可以拟合时间t≥20T_2的数据,其中T_2是链的唤醒时间。除了一些现象学幅度因子之外,该拟合还涉及将复制时间T_3作为第二拟合参数。对于测量的链长,没有达到渐近行为。 ii)我们在理论上曾经批评过的管中的Rouse运动模型在纯现象学层面也被证明是失败的。 iii)如果MC动力学的特定微观结构影响可以忽略不计,那么我们对全副本模型的评估将非常适合总链和内部片段以及所有波矢和所有时间的数据。这种微结构效应显示出逆段大小的波矢量,并强制引入了一些现象学,依赖波矢量的前置因子。对于整个链的动力学,我们基于完整表示模型的数据分析显示了管长波动的重要性。然而,通用(Rouse型)内部松弛并不重要。只能以短的中央子链在管中的扩散运动形式观察到。最后,我们提供了一个适合的公式,该公式在大范围的波矢和链长范围内重现了我们理论上从整个链中散射的数值结果。

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