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Synchronization transitions in phase oscillator populations with partial adaptive coupling

Zhenyu Chen, Zhigang Zheng, Can Xu

2024Chaos An Interdisciplinary Journal of Nonlinear Science12 citationsDOIOpen Access PDF

Abstract

The adaptation underlying many realistic processes plays a pivotal role in shaping the collective dynamics of diverse systems. Here, we untangle the generic conditions for synchronization transitions in a system of coupled phase oscillators incorporating the adaptive scheme encoded by the feedback between the coupling and the order parameter via a power-law function with different weights. We mathematically argue that, in the subcritical and supercritical correlation scenarios, there exists no critical adaptive fraction for synchronization transitions converting from the first (second)-order to the second (first)-order. In contrast to the synchronization transitions previously deemed, the explosive and continuous phase transitions take place in the corresponding regions as long as the adaptive fraction is nonzero, respectively. Nevertheless, we uncover that, at the critical correlation, the routes toward synchronization depend crucially on the relative adaptive weights. In particular, we unveil that the emergence of a range of interrelated scaling behaviors of the order parameter near criticality, manifesting the subcritical and supercritical bifurcations, are responsible for various observed phase transitions. Our work, thus, provides profound insights for understanding the dynamical nature of phase transitions, and for better controlling and manipulating synchronization transitions in networked systems with adaptation.

Topics & Concepts

Synchronization (alternating current)Statistical physicsPhase transitionPhase synchronizationPhysicsCoupling (piping)ScalingKuramoto modelSupercritical fluidDynamical systems theoryTopology (electrical circuits)Phase (matter)Control theory (sociology)Computer scienceMathematicsQuantum mechanicsControl (management)Artificial intelligenceMechanical engineeringCombinatoricsThermodynamicsGeometryEngineeringNonlinear Dynamics and Pattern FormationNeural dynamics and brain functionstochastic dynamics and bifurcation
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