Chimera states through invariant manifold theory
Abstract
We establish the existence of chimera states, simultaneously supporting synchronous and asynchronous dynamics, in a network consisting of two symmetrically linked star subnetworks consisting of identical oscillators with shear and Kuramoto--Sakaguchi coupling. We show that the chimera states may be metastable or asymptotically stable. If the intra-star coupling strength is of order , the chimera states persist on time scales at least of order in general, and on time-scales at least of order if the intra-star coupling is of Kuramoto--Sakaguchi type. If the intra-star coupling configuration is sparse, the chimeras are asymptotically stable. The analysis relies on a combination of dimensional reduction using a M\"obius symmetry group and techniques from averaging theory and normal hyperbolicity.
Cite
@article{arxiv.2102.04445,
title = {Chimera states through invariant manifold theory},
author = {Jaap Eldering and Jeroen S. W. Lamb and Tiago Pereira and Edmilson Roque dos Santos},
journal= {arXiv preprint arXiv:2102.04445},
year = {2021}
}
Comments
32 pages, 8 figures