Coveting thy neighbors fitness as a means to resolve social dilemmas
arXiv:1102.4570 · doi:10.1016/j.jtbi.2011.02.016
Abstract
In spatial evolutionary games the fitness of each individual is traditionally determined by the payoffs it obtains upon playing the game with its neighbors. Since defection yields the highest individual benefits, the outlook for cooperators is gloomy. While network reciprocity promotes collaborative efforts, chances of averting the impending social decline are slim if the temptation to defect is strong. It is therefore of interest to identify viable mechanisms that provide additional support for the evolution of cooperation. Inspired by the fact that the environment may be just as important as inheritance for individual development, we introduce a simple switch that allows a player to either keep its original payoff or use the average payoff of all its neighbors. Depending on which payoff is higher, the influence of either option can be tuned by means of a single parameter. We show that, in general, taking into account the environment promotes cooperation. Yet coveting the fitness of one's neighbors too strongly is not optimal. In fact, cooperation thrives best only if the influence of payoffs obtained in the traditional way is equal to that of the average payoff of the neighborhood. We present results for the prisoner's dilemma and the snowdrift game, for different levels of uncertainty governing the strategy adoption process, and for different neighborhood sizes. Our approach outlines a viable route to increased levels of cooperative behavior in structured populations, but one that requires a thoughtful implementation.
10 two-column pages, 5 figures; accepted for publication in Journal of Theoretical Biology
References in corpus (11)
- Evolutionary games on graphs
- Social diversity and promotion of cooperation in the spatial prisoner's dilemma game
- Dynamical Organization of Cooperation in Complex Topologies
- Cooperation enhanced by inhomogeneous activity of teaching for evolutionary Prisoner's Dilemma games
- Memory-Based Snowdrift Game on Networks
- Cooperation in noisy case: prisoner's dilemma game on two types of regular random graphs
- Robustness of Cooperation in the Evolutionary Prisoner's Dilemma on Complex Networks
- Cooperation in spatial Prisoner's Dilemma with two types of players for increasing number of neighbors
- Social Network Reciprocity as a Phase Transition in Evolutionary Cooperation
- The effect of the topology on the spatial ultimatum game
- Intelligent tit-for-tat in the iterated prisoner's dilemma game