首页> 外文期刊>The Journal of Chemical Physics >IMPROVED TREATMENT OF INERTIA AND NON-MARKOVIAN EFFECTS ON SHORT-TIME DYNAMICS OF DIFFUSION-CONTROLLED REACTION BASED ON GENERALIZED DIFFUSION EQUATION
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IMPROVED TREATMENT OF INERTIA AND NON-MARKOVIAN EFFECTS ON SHORT-TIME DYNAMICS OF DIFFUSION-CONTROLLED REACTION BASED ON GENERALIZED DIFFUSION EQUATION

机译:基于广义扩散方程的惯性的改进处理和非马尔可夫效应对控制扩散反应的短时动力学的影响

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摘要

Starting from a generalized diffusion equation and the Collins-Kimball boundary condition, we investigated the inertia and the non-Markovian effects on the time-dependent rate constant of a diffusion-controlled reaction at short times. In the short-time limit, we obtained the rate constant analytically, and found that the rate constant was independent of the friction coefficient, and was always smaller than the result of the classical Smoluchowski-Collins-Kimball (SCK) theory in which both of the inertia and the non-Markovian effects were neglected. At finite times, we obtained the rate constant numerically, and found that the decay of the rate constant was slower than that of the SCK result. When the non-Markovian effect became larger, the decay became much slower. Our results were consistent with a relevant theory based on a generalized Fokker-Planck equation. The results were compared with computer simulations, and a good agreement was obtained for the case of the maximum reactivity. (C) 1997 American Institute of Physics. [References: 22]
机译:从广义扩散方程和Collins-Kimball边界条件开始,我们研究了惯性和非马尔可夫效应对短时间扩散控制反应随时间变化的速率常数的影响。在短时间内,我们通过分析获得了速率常数,发现速率常数与摩擦系数无关,并且始终小于经典的Smoluchowski-Collins-Kimball(SCK)理论的结果,惯性和非马尔可夫效应被忽略了。在有限的时间,我们通过数值获得了速率常数,发现速率常数的衰减比SCK结果的衰减慢。当非马尔可夫效应变大时,衰减变慢得多。我们的结果与基于广义Fokker-Planck方程的相关理论一致。将结果与计算机模拟进行比较,并且对于最大反应性情况获得了良好的一致性。 (C)1997美国物理研究所。 [参考:22]

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