Synchronization facilitated by frequency differences: Dynamics of coupled-oscillator systems with damaged elements

Fuente: arXiv
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Main Authors: Inagawa, Shota, Hata, Hiroki, Hata, Shigefumi
Format: Preprint
Published: 2025
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author Inagawa, Shota
Hata, Hiroki
Hata, Shigefumi
author_facet Inagawa, Shota
Hata, Hiroki
Hata, Shigefumi
contents This study investigates the synchronization dynamics of coupled-oscillator systems in which some of the oscillators are damaged and lose their autonomous oscillations. The damaged elements are modeled using damped oscillators; thus, the system is composed of both limit-cycle oscillators and damped oscillators. In this system, as is commonly observed in conventional coupled limit-cycle oscillators, synchronization among oscillators is destroyed when the difference between the natural frequencies of the oscillators increases. However, in the presence of damped oscillators, synchronization can be facilitated by further increasing the frequency difference from the desynchronization state. We conduct numerical simulations on coupled Stuart-Landau oscillators and investigate this reentrance of synchronization systematically. We also propose an approximate theory to predict the stability of the synchronization state based on a linear stability analysis of the fixed point, which reveals the appearance of the Hopf modes. Using this theory, we argue that the reentrance of synchronization driven by increasing frequency differences can be observed in a wide range of coupled-oscillator systems with damaged elements.
format Preprint
id arxiv_https___arxiv_org_abs_2511_12820
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Synchronization facilitated by frequency differences: Dynamics of coupled-oscillator systems with damaged elements
Inagawa, Shota
Hata, Hiroki
Hata, Shigefumi
Adaptation and Self-Organizing Systems
This study investigates the synchronization dynamics of coupled-oscillator systems in which some of the oscillators are damaged and lose their autonomous oscillations. The damaged elements are modeled using damped oscillators; thus, the system is composed of both limit-cycle oscillators and damped oscillators. In this system, as is commonly observed in conventional coupled limit-cycle oscillators, synchronization among oscillators is destroyed when the difference between the natural frequencies of the oscillators increases. However, in the presence of damped oscillators, synchronization can be facilitated by further increasing the frequency difference from the desynchronization state. We conduct numerical simulations on coupled Stuart-Landau oscillators and investigate this reentrance of synchronization systematically. We also propose an approximate theory to predict the stability of the synchronization state based on a linear stability analysis of the fixed point, which reveals the appearance of the Hopf modes. Using this theory, we argue that the reentrance of synchronization driven by increasing frequency differences can be observed in a wide range of coupled-oscillator systems with damaged elements.
title Synchronization facilitated by frequency differences: Dynamics of coupled-oscillator systems with damaged elements
topic Adaptation and Self-Organizing Systems
url https://arxiv.org/abs/2511.12820