English

Chimera States in a Two-Population Network of Coupled Pendulum-Like Elements

Chaotic Dynamics 2015-06-17 v4

Abstract

More than a decade ago, a surprising coexistence of synchronous and asynchronous behavior called the chimera state was discovered in networks of nonlocally coupled identical phase oscillators. In later years, chimeras were found to occur in a variety of theoretical and experimental studies of chemical and optical systems, as well as models of neuron dynamics. In this work, we study two coupled populations of pendulum-like elements represented by phase oscillators with a second derivative term multiplied by a mass parameter mm and treat the first order derivative terms as dissipation with parameter ϵ>0\epsilon>0. We first present numerical evidence showing that chimeras do exist in this system for small mass values 0<m<<10<m<<1. We then proceed to explain these states by reducing the coherent population to a single damped pendulum equation driven parametrically by oscillating averaged quantities related to the incoherent population.

Keywords

Cite

@article{arxiv.1308.5528,
  title  = {Chimera States in a Two-Population Network of Coupled Pendulum-Like Elements},
  author = {Tassos Bountis and Vasileios G. Kanas and Johanne Hizanidis and Anastasios Bezerianos},
  journal= {arXiv preprint arXiv:1308.5528},
  year   = {2015}
}