Title
Efficient Methods to Compute Hopf Bifurcations in Chemical Reaction Networks Using Reaction Coordinates
Abstract
We build on our previous work to compute Hopf bifurcation fixed points for chemical reaction systems on the basis of reaction coordinates. For determining the existence of Hopf bifurcations the main algorithmic problem is to determine whether a single multivariate polynomial has a zero for positive coordinates. For this purpose we provide heuristics on the basis of the Newton polytope that ensure the existence of positive and negative values of the polynomial for positive coordinates. We apply our method to the example of the Methylene Blue Oscillator (MBO).
Year
DOI
Venue
2013
10.1007/978-3-319-02297-0_7
CASC
Field
DocType
Volume
Oscillation,Polynomial,Mathematical analysis,Lorenz system,Action-angle coordinates,Polytope,Heuristics,Fixed point,Hopf bifurcation,Mathematics
Conference
8136
ISSN
Citations 
PageRank 
0302-9743
6
0.50
References 
Authors
11
6
Name
Order
Citations
PageRank
Hassan Errami1344.32
Markus Eiswirth2333.62
Dima Grigoriev3992124.46
Werner M. Seiler47917.45
Thomas Sturm530224.81
Andreas Weber6863.70