Non-equilibrium transitions in multiscale systems with a bifurcating slow manifold
Abstract
Noise-induced transitions between metastable fixed points in systems evolving on multiple time scales are analyzed in situations where the time scale separation gives rise to a slow manifold with bifurcation. This analysis is performed within the realm of large deviation theory. It is shown that these non-equilibrium transitions make use of a reaction channel created by the bifurcation structure of the slow manifold, leading to vastly increased transition rates. Several examples are used to illustrate these findings, including an insect outbreak model, a system modeling phase separation in the presence of evaporation, and a system modeling transitions in active matter self-assembly. The last example involves a spatially extended system modeled by a stochastic partial differential equation.
Keywords
Cite
@article{arxiv.1704.06723,
title = {Non-equilibrium transitions in multiscale systems with a bifurcating slow manifold},
author = {Tobias Grafke and Eric Vanden-Eijnden},
journal= {arXiv preprint arXiv:1704.06723},
year = {2017}
}