Network stochastic resonance under higher-order interactions

Fuente: arXiv
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Autori principali: Wang, Zheng, Zhu, Jinjie, Liu, Xianbin
Natura: Preprint
Pubblicazione: 2025
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author Wang, Zheng
Zhu, Jinjie
Liu, Xianbin
author_facet Wang, Zheng
Zhu, Jinjie
Liu, Xianbin
contents Although stochastic resonance phenomena are ubiquitous across various complex systems, the influence mechanisms of higher-order interactions remain elusive. Here, we address this gap by investigating stochastic resonance in coupled phase oscillators with triadic interactions on ring networks that feature periodic modulation of the triadic coupling strength and additive noise. Our analysis reveals that higher-order interactions create fundamentally different resonance landscapes through time-varying potential wells generated by periodic modulation of triadic coupling, enabling novel noise-enhanced processing mechanisms. Additionally, weaker pairwise coupling amplifies resonance effects, while moderate network connectivity appears optimal compared to extensive connections. Our findings establish fundamental principles for network stochastic resonance and provide insights for enhanced signal processing in complex networks.
format Preprint
id arxiv_https___arxiv_org_abs_2509_14796
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Network stochastic resonance under higher-order interactions
Wang, Zheng
Zhu, Jinjie
Liu, Xianbin
Adaptation and Self-Organizing Systems
Although stochastic resonance phenomena are ubiquitous across various complex systems, the influence mechanisms of higher-order interactions remain elusive. Here, we address this gap by investigating stochastic resonance in coupled phase oscillators with triadic interactions on ring networks that feature periodic modulation of the triadic coupling strength and additive noise. Our analysis reveals that higher-order interactions create fundamentally different resonance landscapes through time-varying potential wells generated by periodic modulation of triadic coupling, enabling novel noise-enhanced processing mechanisms. Additionally, weaker pairwise coupling amplifies resonance effects, while moderate network connectivity appears optimal compared to extensive connections. Our findings establish fundamental principles for network stochastic resonance and provide insights for enhanced signal processing in complex networks.
title Network stochastic resonance under higher-order interactions
topic Adaptation and Self-Organizing Systems
url https://arxiv.org/abs/2509.14796