English

Shear, Not Coherence, Organizes chaotic response under Higher-Order Coupling

Chaotic Dynamics 2026-04-10 v1

Abstract

What dynamical quantity is actually controlled by higher-order interactions in chaotic oscillator networks remains unclear. In amplitude-active systems, chaos is often interpreted through coherence, yet coherence is not the quantity that governs instability. In this work, we study a minimal globally coupled quartet of nonisochronous Stuart-Landau oscillators with pairwise and symmetric three-body interactions. The pairwise baseline already supports a connected chaotic branch, and higher-order coupling reconstructs rather than creates this irregular dynamics. We show that chaos is organized not by phase coherence but by effective-frequency shear: higher-order coupling regulates amplitude heterogeneity, which nonisochronicity converts into shear, and shear controls how chaos is expressed under higher-order coupling. The Lyapunov response collapses onto a reduced shear-based description, revealing an indirect control pathway. These results establish that higher-order interactions control chaos only indirectly, by regulating an amplitude-shear mechanism rather than acting directly on synchrony.

Keywords

Cite

@article{arxiv.2604.07842,
  title  = {Shear, Not Coherence, Organizes chaotic response under Higher-Order Coupling},
  author = {Kaiming Luo},
  journal= {arXiv preprint arXiv:2604.07842},
  year   = {2026}
}
R2 v1 2026-07-01T12:00:36.440Z