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arxiv: physics/9705008 · v2 · pith:YLZOXSJMnew · submitted 1997-05-07 · ⚛️ physics.bio-ph · adap-org· cond-mat.dis-nn· nlin.AO· physics.data-an· q-bio

A Simple Model of Evolution with Variable System Size

classification ⚛️ physics.bio-ph adap-orgcond-mat.dis-nnnlin.AOphysics.data-anq-bio
keywords modelsystemdistributionextinctiongrowthonlypower-lawrate
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A simple model of biological extinction with variable system size is presented that exhibits a power-law distribution of extinction event sizes. The model is a generalization of a model recently introduced by Newman (Proc. R. Soc. Lond. B265, 1605 (1996). Both analytical and numerical analysis show that the exponent of the power-law distribution depends only marginally on the growth rate $g$ at which new species enter the system and is equal to the one of the original model in the limit $g\to\infty$. A critical growth rate $g_c$ can be found below which the system dies out. Under these model assumptions stable ecosystems can only exist if the regrowth of species is sufficiently fast.

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