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Dynamics of deterministic fractal polymer networks: Hydrodynamic interactions and the absence of scaling

机译:确定性分形聚合物网络的动力学:流体动力学相互作用和不存在结垢

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摘要

We numerically analyze the scaling behavior of experimentally accessible dynamical relaxation forms for networks modeled through finite Sierpinski-type lattices. Previous works has established unequivocally for such lattices that in the Rouse picture both the mechanical and the dielectric relaxation forms scale in frequency and in time. As we show here, in the Zimm models, based on the preaveraged Oseen tensor, the picture changes drastically; the introduction of the hydrodynamic interactions leads to relaxation patterns which do not scale. Our results show that the relaxation forms are very sensitive to the number of monomers in the network and to the strength of the hydrodynamic interaction parameter.
机译:我们对通过有限Sierpinski型晶格建模的网络的实验可访问动态弛豫形式的缩放行为进行数值分析。先前的工作已经明确地建立了这样的晶格,在Rouse图片中,机械弛豫和介电弛豫都在频率和时间上形成了比例。正如我们在此处所示,在Zimm模型中,基于预先平均的Oseen张量,图像发生了急剧变化;流体动力相互作用的引入导致松弛模式不成比例。我们的结果表明,弛豫形式对网络中单体的数量和流体动力相互作用参数的强度非常敏感。

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