Data di Pubblicazione:
2021
Abstract:
Canards, special trajectories that follow invariant repelling slow manifolds for long time intervals, have been frequently observed in slow-fast systems of either biological, chemical and physical nature. Here, collective canard explosions are demonstrated in a population of globally-coupled phase-rotators subject to adaptive coupling. In particular, we consider a bimodal Kuramoto model displaying coexistence of asynchronous and partially synchronized dynamics subject to a linear global feedback. A detailed geometric singular perturbation analysis of the associated mean-field model allows us to explain the emergence of collective canards in terms of the stability properties of the one-dimensional critical manifold, near which the slow macroscopic dynamics takes place. We finally show how collective canards and related manifolds gradually emerge in the globally-coupled system for increasing system sizes, in spite of the trivial dynamics of the uncoupled rotators.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
Adaptive coupling; Canard explosion; Chemical nature; Global feedback; Kuramoto models; Phase rotator; Physical nature; Slow manifolds; Slow-fast systems; Time interval
Elenco autori:
Torcini, Alessandro; Ciszak, Marzena; Marino, FRANCESCO MARIO SIMONE; Olmi, Simona
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