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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Effect of reactant spatial distribution in the A+B→0 reaction kinetics in one dimension with Coulomb interaction
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Effect of reactant spatial distribution in the A+B→0 reaction kinetics in one dimension with Coulomb interaction

机译:一维库仑相互作用对反应空间分布在A + B→0反应动力学中的影响

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The effect of nonequilibrium charge screening in the kinetics of the one-dimensional, diffusion-controlled A+B-->0 reaction between charged reactants in solids and liquids is studied. The incorrectness of the static, Debye-Huckel theory is shown. Our microscopic formalism is based on the Kirkwood superposition approximation for three-particle densities and the self-consistent treatment of the electrostatic interactions defined by the nonuniform spatial distribution of similar and dissimilar reactants treated in terms of the relevant joint correlation functions. Special attention is paid to the pattern formation due to a reaction-induced non-Poissonian fluctuation spectrum of reactant densities. This reflects a formation of loose domains containing similar reactants only. The effect of asymmetry in reactant mobilities (D-A=0, D-B>0) contrasting the traditional symmetric case, i.e., equal diffusion coefficients (D-A=D-B), is studied. In the asymmetric case concentration decay is predicted to be accelerated, n(t)proportional to t(-alpha), alpha=1/3, as compared to the well-established critical exponent for fluctuation-controlled kinetics in the symmetric case, alpha=1/4, and/or the prediction of the standard chemical kinetics, alpha=1/2. Results for the concentration decay and growth under permanent particle source are compared with results of the mesoscopic theory.
机译:研究了非平衡电荷筛选对固体和液体中带电反应物之间一维扩散控制的A + B-> 0反应动力学的影响。显示了静态的Debye-Huckel理论的不正确性。我们的微观形式主义是基于三粒子密度的柯克伍德叠加近似和对静电相互作用的自洽处理,该静电相互作用是根据相关联合相关函数对相似和相异反应物的不均匀空间分布进行定义的。由于反应引起的反应物密度的非泊松波动谱,应特别注意图案的形成。这反映出仅包含相似反应物的松散结构域的形成。与传统的对称情况(即相等的扩散系数(D-A = D-B))相比,研究了不对称性对反应物迁移率(D-A = 0,D-B> 0)的影响。在非对称情况下,与公认的在对称情况下波动控制动力学的临界指数相比,预计浓度衰减将加速,与t(-α)成正比的n(t),alpha = 1/3 = 1/4,和/或标准化学动力学的预测,α= 1/2。将永久粒子源下浓度衰减和增长的结果与介观理论的结果进行了比较。

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