L{é}vy-noise-induced wavefront propagation for bistable systems

Fuente: arXiv
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Main Author: Semenov, Vladimir V.
Format: Preprint
Published: 2025
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author Semenov, Vladimir V.
author_facet Semenov, Vladimir V.
contents The influence of the L{é}vy noise's properties on wavefront propagation is analyzed on examples of ensembles of locally coupled bistable oscillators and a single bistable delayed-feedback oscillator considered as a spatially-extended system evolving in quasi-space. It is shown that additive L{é}vy noise allows to induce wavefront propagation in ensembles of symmetric bistable oscillators. In such a case, the direction and velocity of the noise-sustained propagation is determined both by the noise's skewness parameter and by the coupling topology (bidirectional and unidirectional coupling schemes are distinguished). In addition, additive L{é}vy noise induces wavefront propagation in a bistable delayed-feedback oscillator assumed to be symmetric such that its dynamics replicates the collective behaviour in the ensemble with unidirectional coupling. The wavefront propagation velocity used in this analysis is shown to be varied when adjusting the noise parameters. The revealed effects are demonstrated in the ensembles by using numerical simulation, whereas the numerical exploration of the delayed-feedback oscillator is complemented by physical experiments, showing a good correspondence and disclosing thereby the robustness of the observed phenomena.
format Preprint
id arxiv_https___arxiv_org_abs_2502_00933
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle L{é}vy-noise-induced wavefront propagation for bistable systems
Semenov, Vladimir V.
Adaptation and Self-Organizing Systems
The influence of the L{é}vy noise's properties on wavefront propagation is analyzed on examples of ensembles of locally coupled bistable oscillators and a single bistable delayed-feedback oscillator considered as a spatially-extended system evolving in quasi-space. It is shown that additive L{é}vy noise allows to induce wavefront propagation in ensembles of symmetric bistable oscillators. In such a case, the direction and velocity of the noise-sustained propagation is determined both by the noise's skewness parameter and by the coupling topology (bidirectional and unidirectional coupling schemes are distinguished). In addition, additive L{é}vy noise induces wavefront propagation in a bistable delayed-feedback oscillator assumed to be symmetric such that its dynamics replicates the collective behaviour in the ensemble with unidirectional coupling. The wavefront propagation velocity used in this analysis is shown to be varied when adjusting the noise parameters. The revealed effects are demonstrated in the ensembles by using numerical simulation, whereas the numerical exploration of the delayed-feedback oscillator is complemented by physical experiments, showing a good correspondence and disclosing thereby the robustness of the observed phenomena.
title L{é}vy-noise-induced wavefront propagation for bistable systems
topic Adaptation and Self-Organizing Systems
url https://arxiv.org/abs/2502.00933