Coevolving and competing species or game-theoretic strategies exhibit rich and complex dynamics for which a general theoretical framework based on finite populations is still lacking. Recently, an explicit mean-field description in the form of a Fokker-Planck equation was derived for frequency-dependent selection with two strategies in finite populations based on microscopic processes [A. Traulsen, J. C. Claussen, and C. Hauert, Phys. Rev. Lett. 95, 238701 (2005)]. Here we generalize this approach in a twofold way: First, we extend the framework to an arbitrary number of strategies and second, we allow for mutations in the evolutionary process. The deterministic limit of infinite population size of the frequency-dependent Moran process yiel...
We study large fluctuations in evolutionary games belonging to the coordination and anti-coordinatio...
International audienceA distinctive signature of living systems is Darwinian evolution, that is, a p...
We show that when selection is extreme—the fittest strategy always reproduces or is imitated—the une...
Coevolving and competing species or game-theoretic strategies exhibit rich and complex dynamics for ...
The coevolutionary dynamics in finite populations currently is investigated in a wide range of disci...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
The coevolutionary dynamics in finite populations currently is investigated in a wide range of disci...
Evolutionary game theory and theoretical population genetics are two different fields sharing many c...
We study evolutionary game dynamics in finite populations. We analyze an evolutionary process, which...
Abstract: Companies and customers as well as competing species in biologies are widely modeled by mu...
Evolutionary game dynamics describes the spreading of successful strategies in a population of repro...
Evolution is simultaneously driven by a number of processes such as mutation, competition and random...
Coevolutionary dynamics is investigated in chemical catalysis, biological evolution, social and econ...
We study large fluctuations in evolutionary games belonging to the coordination and anti-coordinatio...
International audienceA distinctive signature of living systems is Darwinian evolution, that is, a p...
We show that when selection is extreme—the fittest strategy always reproduces or is imitated—the une...
Coevolving and competing species or game-theoretic strategies exhibit rich and complex dynamics for ...
The coevolutionary dynamics in finite populations currently is investigated in a wide range of disci...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
The coevolutionary dynamics in finite populations currently is investigated in a wide range of disci...
Evolutionary game theory and theoretical population genetics are two different fields sharing many c...
We study evolutionary game dynamics in finite populations. We analyze an evolutionary process, which...
Abstract: Companies and customers as well as competing species in biologies are widely modeled by mu...
Evolutionary game dynamics describes the spreading of successful strategies in a population of repro...
Evolution is simultaneously driven by a number of processes such as mutation, competition and random...
Coevolutionary dynamics is investigated in chemical catalysis, biological evolution, social and econ...
We study large fluctuations in evolutionary games belonging to the coordination and anti-coordinatio...
International audienceA distinctive signature of living systems is Darwinian evolution, that is, a p...
We show that when selection is extreme—the fittest strategy always reproduces or is imitated—the une...