Synchronization of oscillators with long range interaction: Phase transition and anomalous finite size effects

Máté Maródi, Francesco d’Ovidio, and Tamás Vicsek
Phys. Rev. E 66, 011109 – Published 25 July 2002
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Abstract

Synchronization in a lattice of a finite population of phase oscillators with algebraically decaying, non-normalized coupling is studied by numerical simulations. A critical level of decay is found, below which full locking takes place if the population contains a sufficiently large number of elements. For large number of oscillators and small coupling constant, numerical simulations and analytical arguments indicate that a phase transition separating synchronization from incoherence appears at a decay exponent value equal to the number of dimensions of the lattice. In contrast with earlier results on similar systems with normalized coupling, we have indications that for the decay exponent less than the dimensions of the lattice and for large populations, synchronization is possible even if the coupling is arbitarily weak. This finding suggests that in organisms interacting through slowly decaying signals such as light or sound, collective oscillations can always be established if the population is sufficiently large.

  • Received 21 December 2001

DOI:https://doi.org/10.1103/PhysRevE.66.011109

©2002 American Physical Society

Authors & Affiliations

Máté Maródi1,*, Francesco d’Ovidio2,†, and Tamás Vicsek1,‡

  • 1Department of Biological Physics, Eötvös University, Pázmány Péter Sétány 1A, Budapest, 1117 Hungary
  • 2Chaos Group and Quantum Protein Center, Department of Physics, Building 309, Danish Technical University, DK-2800 Lyngby, Denmark

  • *Electronic address: marodi@complex.elte.hu
  • Electronic address: dovidio@fysik.dtu.dk
  • Electronic address: vicsek@angel.elte.hu

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Vol. 66, Iss. 1 — July 2002

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