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The Kuramoto model: A simple paradigm for synchronization phenomena

Reviews of Modern Physics · 2005 · Vol. 77(1) · pp. 137–185
Juan A. AcebrónL. L. BonillaC. J. Pérez VicenteFélix RitortRenato Spigler

Abstract

Synchronization phenomena in large populations of interacting elements are the subject of intense research efforts in physical, biological, chemical, and social systems. A successful approach to the problem of synchronization consists of modeling each member of the population as a phase oscillator. In this review, synchronization is analyzed in one of the most representative models of coupled phase oscillators, the Kuramoto model. A rigorous mathematical treatment, specific numerical methods, and many variations and extensions of the original model that have appeared in the last few years are presented. Relevant applications of the model in different contexts are also included.

Nonlinear Dynamics and Pattern Formationstochastic dynamics and bifurcationNeural dynamics and brain functionSynchronization (alternating current)PhysicsStatistical physicsKuramoto modelSimple (philosophy)Population modelSynchronization networksPopulationMathematical modelPhase (matter)

Funding

  • Istituto Nazionale di Alta Matematica "Francesco Severi"
  • European Commission
  • Gruppo Nazionale per la Fisica Matematica
Citations
3,413
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48.12
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230
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