Feedback-delay dependence of the stability of cluster periodic orbits in populations of degrade-and-fire oscillators with common activator

Fuente: arXiv
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Auteurs principaux: Fernandez, Bastien, Tanzi, Matteo
Format: Preprint
Publié: 2024
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author Fernandez, Bastien
Tanzi, Matteo
author_facet Fernandez, Bastien
Tanzi, Matteo
contents Feedback delay has been identified as a key ingredient in the quorum sensing synchronization of synthetic gene oscillators. While this influence has been evidenced at the theoretical level in a simplified system of degrade-and-fire oscillators coupled via a common activator protein, full mathematical certifications remained to be provided. Here, we prove from a rigorous mathematical viewpoint that, for the very same model, the synchronized degrade-and-fire oscillations are 1/ unstable with respect to out-of-sync perturbations in absence of delay, and 2/ are otherwise asymptotically stable in presence of delay, no matter how small is its amplitude. To that goal, we proceed to an extensive study of the population dynamics in this system, which in particular identifies the mechanisms of, and related criteria for, the delay-dependent stability of periodic orbits with respect to out-of-sync perturbations. As an additional outcome, the analysis also reveals that, depending on the parameters, multiple stable partially synchronized periodic orbits can coexist with the fully synchronized one.
format Preprint
id arxiv_https___arxiv_org_abs_2405_07752
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Feedback-delay dependence of the stability of cluster periodic orbits in populations of degrade-and-fire oscillators with common activator
Fernandez, Bastien
Tanzi, Matteo
Dynamical Systems
Classical Analysis and ODEs
Populations and Evolution
Feedback delay has been identified as a key ingredient in the quorum sensing synchronization of synthetic gene oscillators. While this influence has been evidenced at the theoretical level in a simplified system of degrade-and-fire oscillators coupled via a common activator protein, full mathematical certifications remained to be provided. Here, we prove from a rigorous mathematical viewpoint that, for the very same model, the synchronized degrade-and-fire oscillations are 1/ unstable with respect to out-of-sync perturbations in absence of delay, and 2/ are otherwise asymptotically stable in presence of delay, no matter how small is its amplitude. To that goal, we proceed to an extensive study of the population dynamics in this system, which in particular identifies the mechanisms of, and related criteria for, the delay-dependent stability of periodic orbits with respect to out-of-sync perturbations. As an additional outcome, the analysis also reveals that, depending on the parameters, multiple stable partially synchronized periodic orbits can coexist with the fully synchronized one.
title Feedback-delay dependence of the stability of cluster periodic orbits in populations of degrade-and-fire oscillators with common activator
topic Dynamical Systems
Classical Analysis and ODEs
Populations and Evolution
url https://arxiv.org/abs/2405.07752