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Phase diagrams for an evolutionary prisoner’s dilemma game on two-dimensional lattices

Physical Review E · 2005 · Vol. 72(4) · pp. 047107–047107
György SzabóJeromos VukovAttila Szolnoki

Abstract

The effects of payoffs and noise on the maintenance of cooperative behavior are studied in an evolutionary prisoner's dilemma game with players located on the sites of different two-dimensional lattices. This system exhibits a phase transition from a mixed state of cooperators and defectors to a homogeneous one where only the defectors remain alive. Using Monte Carlo simulations and the generalized mean-field approximations we have determined the phase boundaries (critical points) separating the two phases on the plane of the temperature (noise) and temptation to choose defection. In the zero temperature limit the cooperation can be sustained only for those connectivity structures where three-site clique percolation occurs.

Evolutionary Game Theory and CooperationOpinion Dynamics and Social InfluenceEvolution and Genetic DynamicsPrisoner's dilemmaDilemmaSuperrationalityMathematical economicsPhase (matter)Strong reciprocityComputer scienceMathematicsGame theoryStatistical physics
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References
Evolutionary prisoner’s dilemma game on a square lattice
Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics · 1998 · 1,607 citations
The Evolution of Cooperation
Science · 1981 · 20,127 citations
Statistical mechanics of complex networks
Reviews of Modern Physics · 2002 · 20,311 citations
The genetical evolution of social behaviour. II
Journal of Theoretical Biology · 1964 · 4,082 citations
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