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A two-player iterated survival game

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  • Wakeley, John
  • Nowak, Martin

Abstract

We describe an iterated game between two players, in which the payoff is to survive a number of steps. Expected payoffs are probabilities of survival. A key feature of the game is that individuals have to survive on their own if their partner dies. We consider individuals with hardwired, unconditional behaviors or strategies. When both players are present, each step is a symmetric two-player game. The overall survival of the two individuals forms a Markov chain. As the number of iterations tends to infinity, all probabilities of survival decrease to zero. We obtain general, analytical results for n-step payoffs and use these to describe how the game changes as n increases. In order to predict changes in the frequency of a cooperative strategy over time, we embed the survival game in three different models of a large, well-mixed population. Two of these models are deterministic and one is stochastic. Offspring receive their parent’s type without modification and fitnesses are determined by the game. Increasing the number of iterations changes the prospects for cooperation. All models become neutral in the limit (n→∞). Further, if pairs of cooperative individuals survive together with high probability, specifically higher than for any other pair and for either type when it is alone, then cooperation becomes favored if the number of iterations is large enough. This holds regardless of the structure of pairwise interactions in a single step. Even if the single-step interaction is a Prisoner’s Dilemma, the cooperative type becomes favored. Enhanced survival is crucial in these iterated evolutionary games: if players in pairs start the game with a fitness deficit relative to lone individuals, the prospects for cooperation can become even worse than in the case of a single-step game.

Suggested Citation

  • Wakeley, John & Nowak, Martin, 2019. "A two-player iterated survival game," Theoretical Population Biology, Elsevier, vol. 125(C), pages 38-55.
  • Handle: RePEc:eee:thpobi:v:125:y:2019:i:c:p:38-55
    DOI: 10.1016/j.tpb.2018.12.001
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    References listed on IDEAS

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    1. Ádám Kun & Gergely Boza & István Scheuring, 2006. "Asynchronous snowdrift game with synergistic effect as a model of cooperation," Behavioral Ecology, International Society for Behavioral Ecology, vol. 17(4), pages 633-641, July.
    2. De Jaegher, Kris, 2017. "Harsh environments and the evolution of multi-player cooperation," Theoretical Population Biology, Elsevier, vol. 113(C), pages 1-12.
    3. Martin A. Nowak & Karl Sigmund, 1998. "Evolution of indirect reciprocity by image scoring," Nature, Nature, vol. 393(6685), pages 573-577, June.
    4. Martin A. Nowak & Akira Sasaki & Christine Taylor & Drew Fudenberg, 2004. "Emergence of cooperation and evolutionary stability in finite populations," Nature, Nature, vol. 428(6983), pages 646-650, April.
    5. Martin J. Osborne & Ariel Rubinstein, 1994. "A Course in Game Theory," MIT Press Books, The MIT Press, edition 1, volume 1, number 0262650401, December.
    6. Stephen Schecter & Herbert Gintis, 2016. "Game Theory in Action: An Introduction to Classical and Evolutionary Models," Economics Books, Princeton University Press, edition 1, number 10739.
    7. M.A. Nowak & K. Sigmund, 1998. "Evolution of Indirect Reciprocity by Image Scoring/ The Dynamics of Indirect Reciprocity," Working Papers ir98040, International Institute for Applied Systems Analysis.
    8. Kropotkin, Petr, 1902. "Mutual Aid: A Factor of Evolution," History of Economic Thought Books, McMaster University Archive for the History of Economic Thought, number kropotkin1902.
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    1. Karbowski, Adam, 2019. "Greed and fear in downstream R&D games," EconStor Open Access Articles and Book Chapters, ZBW - Leibniz Information Centre for Economics, vol. 32, pages 63-76.

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