Abstract

We study the long-time behaviour of the solutions to Smoluchowski coagulation equations with a source term of small clusters. The source drives the system out-of-equilibrium, leading to a rich range of different possible long-time behaviours, including anomalous self-similarity. The coagulation kernel is non-gelling, homogeneous, with homogeneity , and behaves like when with . Our analysis shows that the long-time behaviour of the solutions depends on the parameters γ and λ. More precisely, we argue that the long-time behaviour is self-similar, although the scaling of the self-similar solutions depends on the sign of and on whether or . In all these cases, the scaling differs from the usual one that has been previously obtained when or . In the last part of the paper, we present some conjectures supporting the self-similar ansatz also for the critical case .

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