University of Fribourg, Adolphe Merkle Institute, CH-1723 Marly 1, Switzerland.
Phys Rev Lett. 2010 Sep 17;105(12):120601. doi: 10.1103/PhysRevLett.105.120601. Epub 2010 Sep 13.
Diffusion-limited reactions are usually described within the Smoluchowski theory, which neglects interparticle interactions. We propose a simple way to incorporate excluded-volume effects building on simulations of hard sphere in the presence of a sink. For large values of the sink-to-particle size ratio R(s), the measured encounter rate is in good agreement with a simple generalization of the Smoluchowski equation at high densities. Reducing R(s), the encounter rate is substantially depressed and becomes even nonmonotonic for R(s)<<1. Concurrently with the saturation of the rate, stationary density waves set in close to the sink. A mean-field analysis helps to shed light on the subtle link between such ordering and the slowing down of the encounter dynamics. Finally, we show how an infinitesimal amount of nonreacting impurities can equally slow down dramatically the reaction.
扩散限制反应通常在忽略粒子间相互作用的斯莫鲁霍夫斯基理论中进行描述。我们提出了一种简单的方法,通过在存在汇的情况下模拟硬球来纳入排除体积效应。对于较大的汇-粒子尺寸比 R(s),测量的遭遇率与高浓度下斯莫鲁霍夫斯基方程的简单推广非常吻合。随着 R(s) 的减小,遭遇率大大降低,并且对于 R(s)<1 甚至是非单调的。与速率饱和同时发生的是,在汇附近会出现稳定的密度波。平均场分析有助于揭示这种有序性与遭遇动力学减缓之间的微妙联系。最后,我们展示了微量的不反应杂质如何同样可以显著减缓反应。