Temporal assortment of cooperators in the spatial prisoner's dilemma.

Tim Johnson, Oleg Smirnov
Author Information
  1. Tim Johnson: Atkinson Graduate School of Management, Willamette University, Salem, OR, 97301, USA. tjohnson@willamette.edu. ORCID
  2. Oleg Smirnov: Department of Political Science, Stony Brook University, Stony Brook, NY, 11794, USA. ORCID

Abstract

We study a spatial, one-shot prisoner's dilemma (PD) model in which selection operates on both an organism's behavioral strategy (cooperate or defect) and its decision of when to implement that strategy, which we depict as an organism's choice of one point in time, out of a set of discrete time slots, at which to carry out its PD strategy. Results indicate selection for cooperators across various time slots and parameter settings, including parameter settings in which cooperation would not evolve in an exclusively spatial model-as in work investigating exogenously imposed temporal networks. Moreover, in the presence of time slots, cooperators' portion of the population grows even under different combinations of spatial structure, transition rules, and update dynamics, though rates of cooperator fixation decline under pairwise comparison and synchronous updating. These findings indicate that, under certain evolutionary processes, merely existing in time and space promotes the evolution of cooperation.

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MeSH Term

Cooperative Behavior
Game Theory
Humans
Models, Psychological
Prisoner Dilemma

Word Cloud

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