Evolutionary dynamics of cooperation in neutral populations
arXiv:1712.02321 · doi:10.1088/1367-2630/aa9fd2
Abstract
Cooperation is a difficult proposition in the face of Darwinian selection. Those that defect have an evolutionary advantage over cooperators who should therefore die out. However, spatial structure enables cooperators to survive through the formation of homogeneous clusters, which is the hallmark of network reciprocity. Here we go beyond this traditional setup and study the spatiotemporal dynamics of cooperation in a population of populations. We use the prisoner's dilemma game as the mathematical model and show that considering several populations simultaneously give rise to fascinating spatiotemporal dynamics and pattern formation. Even the simplest assumption that strategies between different populations are payoff-neutral with one another results in the spontaneous emergence of cyclic dominance, where defectors of one population become prey of cooperators in the other population, and vice versa. Moreover, if social interactions within different populations are characterized by significantly different temptations to defect, we observe that defectors in the population with the largest temptation counterintuitively vanish the fastest, while cooperators that hang on eventually take over the whole available space. Our results reveal that considering the simultaneous presence of different populations significantly expands the complexity of evolutionary dynamics in structured populations, and it allow us to understand the stability of cooperation under adverse conditions that could never be bridged by network reciprocity alone.
14 pages, 7 figures; accepted for publication in New Journal of Physics
References in corpus (15)
- Statistical physics of social dynamics
- The structure and dynamics of multilayer networks
- Evolutionary games on graphs
- Statistical physics of human cooperation
- Evolutionary dynamics of group interactions on structured populations: A review
- Evolutionary games on multilayer networks: A colloquium
- Co-evolution of strategy and structure in complex networks with dynamical linking
- Dynamical Organization of Cooperation in Complex Topologies
- Cyclic dominance in evolutionary games: A review
- Statistical physics of crime: A review
- Determinants of public cooperation in multiplex networks
- Social Network Reciprocity as a Phase Transition in Evolutionary Cooperation
- Second-order freeriding on antisocial punishment restores the effectiveness of prosocial punishment
- Phase transitions induced by variation of invasion rates in spatial cyclic predator-prey models with four or six species
- Stochastic dynamics of the prisoner's dilemma with cooperation facilitators
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