arXiv · 2306.00733
Emergence of ultradiscrete states due to phase lock caused by saddle-node bifurcation in discrete limit cycles
Abstract
Dynamical properties of limit cycles in a tropically discretized negative feedback model are numerically investigated. This model has a controlling parameter $\tau$, which corresponds to time interval for the time evolution of phase in the limit cycles. By considering $\tau$ as a bifurcation parameter, we find that ultradiscrete state emerges due to phase lock caused by saddle-node bifurcation. Furthermore, focusing on limit cycles for the max-plus negative feedback model, it is found that the unstable limit cycle in the max-plus model corresponds to the unstable fixed points emerging by the saddle-node bifurcation in the tropically discretized model.
Explore related subjects
Keep this discovery
Yoshihiro Yamazaki, Shousuke Ohmori. 2023-05-13. Emergence of ultradiscrete states due to phase lock caused by saddle-node bifurcation in discrete limit cycles. https://arxiv.org/abs/2306.00733
Cite the original work for its findings. Save a collection to share your selection of sources.