Generalized Smoluchowski equation with correlation between clusters
Lionel Sittler

TL;DR
This paper extends the Smoluchowski equation by incorporating correlations between clusters, deriving new reaction rates that depend on spatial dimension and cluster properties, supported by analytical solutions and Monte Carlo simulations.
Contribution
It introduces a correlation term into the Smoluchowski reaction rate, accounting for cluster interactions and spatial dimension effects, which was not previously modeled.
Findings
Derived a new reaction rate incorporating correlations.
Validated the model with Monte Carlo simulations.
Confirmed analytical solutions in one dimension.
Abstract
In this paper we compute new reaction rates of the Smoluchowski equation which takes into account correlations. The new rate K = KMF + KC is the sum of two terms. The first term is the known Smoluchowski rate with the mean-field approximation. The second takes into account a correlation between clusters. For this purpose we introduce the average path of a cluster. We relate the length of this path to the reaction rate of the Smoluchowski equation. We solve the implicit dependence between the average path and the density of clusters. We show that this correlation length is the same for all clusters. Our result depends strongly on the spatial dimension d. The mean-field term KMFi,j = (Di + Dj)(rj + ri)d-2, which vanishes for d = 1 and is valid up to logarithmic correction for d = 2, is the usual rate found with the Smoluchowski model without correlation (where ri is the radius and Di is…
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