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Time-dependent diffusion in tubes with periodic partitions

机译:具有时间间隔的管中随时间的扩散

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The presence of obstacles leads to a slowdown of diffusion. We study the slowdown when diffusionoccurs in a tube, and obstacles are periodically spaced identical partitions with circular apertures of arbitrary radius in their centers. The mean squared displacement of a particle diffusing in such asystem at large times is given by (Ax2(t))=2Deft-t, t—÷00, where Deft is the effective diffusion coefficient, which is smaller than the particle diffusion coefficient in the tube with no partitions, Do.The latter characterizes the short-time behavior of the mean squared displacement, (Ax2(0)=2Dot,t—> 0. Thus, the particle diffusion coefficient decreases from DO to Deff as time goes from zero toinfinity. We derive analytical solutions for the Laplace transforms of the time-dependent diffusioncoefficient and the mean squared displacement that show how these functions depend on the geometric parameters of the tube. To obtain these solutions we replace nonuniform partitions withapertures by effective partitions that are uniformly permeable for diffusing particles. Our choice of the partition permeability is based on the recent result for the corresponding effective trapping rateobtained by means of boundary homogenization. To establish the range of applicability of our approximate theory we compare its predictions with the results found in Brownian dynamicssimulations. Comparison shows excellent agreement between the two at arbitrary value of the aperture radius when the tube radius does not exceed the interpartition distance.
机译:障碍物的存在导致扩散减慢。我们研究了在管中发生扩散时的减速情况,并且障碍物以相同的间隔定期隔开,并且在它们的中心具有任意半径的圆形孔。在这样的系统中,长时间扩散的粒子的均方位移为(Ax2(t))= 2Deft-t,t-00,其中Deft是有效扩散系数,小于后者描述了均方位移的短时行为(Ax2(0)= 2Dot,t—>0。因此,随着时间的流逝,粒子扩散系数从DO减小到Deff)零无穷大,我们推导了随时间变化的扩散系数和均方位移的拉普拉斯变换的解析解,它们显示了这些函数如何依赖于管的几何参数,为了获得这些解,我们用有效的间隔来替换具有孔径的非均匀间隔。我们选择分配渗透率的依据是最近通过边界均质化获得的相应有效捕集率的结果。稳定我们的近似理论的适用范围,我们将其预测与布朗动力学模拟中的结果进行比较。比较表明,当管半径不超过分隔距离时,在任意的孔径半径值下,两者之间的一致性极好。

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