English

Phase transitions in dependence of apex predator decaying ratio in a cyclic dominant system

Populations and Evolution 2019-01-08 v1 Statistical Mechanics Physics and Society

Abstract

Cyclic dominant systems, like rock-paper-scissors game, are frequently used to explain biodiversity in nature, where mobility, reproduction and intransitive competition are on stage to provide the coexistence of competitors. A significantly new situation emerges if we introduce an apex predator who can superior all members of the mentioned three-species system. In the latter case the evolution may terminate into three qualitatively different destinations depending on the apex predator decaying ratio qq. In particular, the whole population goes extinct or all four species survive or only the original three-species system remains alive as we vary the control parameter. These solutions are separated by a discontinuous and a continuous phase transitions at critical qq values. Our results highlight that cyclic dominant competition can offer a stable way to survive even in a predator-prey-like system that can be maintained for large interval of critical parameter values.

Keywords

Cite

@article{arxiv.1812.03406,
  title  = {Phase transitions in dependence of apex predator decaying ratio in a cyclic dominant system},
  author = {D. Bazeia and B. F. de Oliveira and A. Szolnoki},
  journal= {arXiv preprint arXiv:1812.03406},
  year   = {2019}
}

Comments

version to appear in EPL. 7 pages, 7 figures