Early warning signal for interior crises in excitable systems
Abstract
The ability to reliably predict critical transitions in dynamical systems is a long-standing goal of diverse scientific communities. Previous work focused on early warning signals related to local bifurcations (critical slowing down) and non-bifurcation type transitions. We extend this toolbox and report on a characteristic scaling behavior (critical attractor growth) which is indicative of an impending global bifurcation, an interior crisis in excitable systems. We demonstrate our early warning signal in a conceptual climate model as well as in a model of coupled neurons known to exhibit extreme events. We observed critical attractor growth prior to interior crises of chaotic as well as strange-nonchaotic attractors. These observations promise to extend the classes of transitions that can be predicted via early warning signals.
Cite
@article{arxiv.1711.04594,
title = {Early warning signal for interior crises in excitable systems},
author = {Rajat Karnatak and Holger Kantz and Stephan Bialonski},
journal= {arXiv preprint arXiv:1711.04594},
year = {2017}
}
Comments
6 pages, 4 figures