Martens S, Schmid G, Schimansky-Geier L, Hänggi P
Department of Physics, Humboldt-Universität zu Berlin, Berlin, Germany.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 May;83(5 Pt 1):051135. doi: 10.1103/PhysRevE.83.051135. Epub 2011 May 31.
Transport of point-size Brownian particles under the influence of a constant and uniform force field through a planar three-dimensional channel with smoothly varying, axis-symmetric periodic side walls is investigated. Here we employ an asymptotic analysis in the ratio between the difference of the widest and the most narrow constriction divided through the period length of the channel geometry. We demonstrate that the leading-order term is equivalent to the Fick-Jacobs approximation. By use of the higher-order corrections to the probability density we show that in the diffusion-dominated regime the average transport velocity is obtained as the product of the zeroth-order Fick-Jacobs result and the expectation value of the spatially dependent diffusion coefficient D(x), which substitutes the constant diffusion coefficient in the common Fick-Jacobs equation. The analytic findings are corroborated with the precise numerical results of a finite element calculation of the Smoluchowski diffusive particle dynamics occurring in a reflection symmetric sinusoidal-shaped channel.
研究了点尺寸布朗粒子在恒定均匀力场影响下,通过具有平滑变化、轴对称周期性侧壁的平面三维通道的输运情况。在此,我们采用一种渐近分析方法,该方法基于通道几何形状周期长度除最宽与最窄收缩之差的比值。我们证明,主导项等同于菲克 - 雅各布斯近似。通过对概率密度进行高阶修正,我们表明,在扩散主导区域,平均输运速度可通过零阶菲克 - 雅各布斯结果与空间相关扩散系数(D(x))的期望值相乘得到,该扩散系数(D(x))替代了普通菲克 - 雅各布斯方程中的恒定扩散系数。解析结果通过在反射对称正弦形通道中发生的斯莫卢霍夫斯基扩散粒子动力学的有限元计算的精确数值结果得到了证实。