Laboratoire de Physique de la Matière Condensée, CNRS-Ecole Polytechnique, Institut Polytechnique de Paris, 91120 Palaiseau, France.
Phys Rev E. 2023 Apr;107(4-1):044105. doi: 10.1103/PhysRevE.107.044105.
We revise the encounter-based approach to imperfect diffusion-controlled reactions, which employs the statistics of encounters between a diffusing particle and the reactive region to implement surface reactions. We extend this approach to deal with a more general setting, in which the reactive region is surrounded by a reflecting boundary with an escape region. We derive a spectral expansion for the full propagator and investigate the behavior and probabilistic interpretations of the associated probability flux density. In particular, we obtain the joint probability density of the escape time and the number of encounters with the reactive region before escape, and the probability density of the first-crossing time of a prescribed number of encounters. We briefly discuss generalizations of the conventional Poissonian-type surface reaction mechanism described by Robin boundary condition and potential applications of this formalism in chemistry and biophysics.
我们修正了基于遭遇的非完美扩散控制反应方法,该方法利用扩散粒子与反应区之间的遭遇统计来实现表面反应。我们将这种方法扩展到更一般的情况,其中反应区被反射边界包围,并带有逃逸区。我们推导出全传播子的谱展开,并研究相关概率通量密度的行为和概率解释。特别是,我们得到了逃逸时间和在逃逸前与反应区遭遇次数的联合概率密度,以及指定遭遇次数的首次穿越时间的概率密度。我们简要讨论了描述为 Robin 边界条件的常规泊松型表面反应机制的推广以及该形式在化学和生物物理学中的潜在应用。