English

Spatial organization in cyclic Lotka-Volterra systems

Condensed Matter 2009-10-28 v1 Populations and Evolution

Abstract

We study the evolution of a system of NN interacting species which mimics the dynamics of a cyclic food chain. On a one-dimensional lattice with N<5 species, spatial inhomogeneities develop spontaneously in initially homogeneous systems. The arising spatial patterns form a mosaic of single-species domains with algebraically growing size, (t)tα\ell(t)\sim t^\alpha, where α=3/4\alpha=3/4 (1/2) and 1/3 for N=3 with sequential (parallel) dynamics and N=4, respectively. The domain distribution also exhibits a self-similar spatial structure which is characterized by an additional length scale, L(t)tβ{\cal L}(t)\sim t^\beta, with β=1\beta=1 and 2/3 for N=3 and 4, respectively. For N5N\geq 5, the system quickly reaches a frozen state with non interacting neighboring species. We investigate the time distribution of the number of mutations of a site using scaling arguments as well as an exact solution for N=3. Some possible extensions of the system are analyzed.

Keywords

Cite

@article{arxiv.cond-mat/9606069,
  title  = {Spatial organization in cyclic Lotka-Volterra systems},
  author = {L. Frachebourg and P. L. Krapivsky and E. Ben-Naim},
  journal= {arXiv preprint arXiv:cond-mat/9606069},
  year   = {2009}
}

Comments

18 pages, 10 figures, revtex, also available from http://arnold.uchicago.edu/~ebn/

R2 v1 2026-07-22T11:53:26.712Z