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- W2945164448 abstract "We investigate a six-species class of May-Leonard models leading to the formation of two types of competing spatial domains, each one inhabited by three species with their own internal cyclic rock-paper-scissors dynamics. We study the resulting population dynamics using stochastic numerical simulations in two-dimensional space. We find that as three-species domains shrink, there is an increasing probability of extinction of two of the species inhabiting the domain, with the consequent creation of one-species domains. We determine the critical initial radius beyond which these one-species spatial domains are expected to expand. We further show that a transient scaling regime, with a slower average growth rate of the characteristic length scale $L$ of the spatial domains with time $t$, takes place before the transition to a standard $Lensuremath{propto}{t}^{1/2}$ scaling law, resulting in an extended period of coexistence." @default.
- W2945164448 created "2019-05-29" @default.
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- W2945164448 date "2019-05-24" @default.
- W2945164448 modified "2023-10-01" @default.
- W2945164448 title "Expanding spatial domains and transient scaling regimes in populations with local cyclic competition" @default.
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- W2945164448 doi "https://doi.org/10.1103/physreve.99.052310" @default.
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