2015/01/23 by Michael A. Schwemmer, Schwemmer, Michael A., Jay Newby +2
Biochemistry, Genetics and Molecular Biology · Computer Science · Physics and Astronomy · #Gene Regulatory Network Analysis #Nonlinear Dynamics and Pattern Formation #nlin.CD #stochastic dynamics and bifurcation
paper · pdf · doi:10.48550/arxiv.1501.05688
20 pages, 13 figures
arxiv created 2015/01/23 · arxiv updated 2015/01/26
Additive noise is known to produce counter-intuitive behaviors in nonlinear dynamical systems. Previously, it was shown that systems with a deterministic limit cycle can display bistable switching between metastable states in the presence of asymmetric additive white noise. Here, we systematically analyze the dynamics of this bistable behavior and show how the vector field away from the limit cycle influences the rate and directionality of the bistable switching. Using stochastic phase reduction methods, we identify mechanisms underlying different rates of switching and predict when the system will rotate in the opposite direction of the deterministic limit cycle. Thus, this work presents an alternative mechanism for generating a range of bistable switch-like behaviors that have been observed in a number of physical systems.