English

Seasonal Floquet states in a game-driven evolutionary dynamics

Populations and Evolution 2015-08-13 v3 Statistical Mechanics Biological Physics

Abstract

Mating preferences of many biological species are not constant but season-dependent. Within the framework of evolutionary game theory this can be modeled with two finite opposite-sex populations playing against each other following the rules that are periodically changing. By combining Floquet theory and the concept of quasi-stationary distributions, we reveal existence of metastable time-periodic states in the evolution of finite game-driven populations. The evolutionary Floquet states correspond to time-periodic probability flows in the strategy space which cannot be resolved within the mean-field framework. The lifetime of metastable Floquet states increases with the size NN of populations so that they become attractors in the limit NN \rightarrow \infty.

Keywords

Cite

@article{arxiv.1505.06726,
  title  = {Seasonal Floquet states in a game-driven evolutionary dynamics},
  author = {Olena Tkachenko and Juzar Thingna and Sergey Denisov and Vasily Zaburdaev and Peter Hänggi},
  journal= {arXiv preprint arXiv:1505.06726},
  year   = {2015}
}

Comments

5 pages + 4 figures + supplementary material included