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  • Letter

Contrarian role of phase and phase velocity coupling in synchrony of second-order phase oscillators

Arindam Mishra1, Suman Saha2,*, Subrata Ghosh3,*, Syamal Kumar Dana4,5, and Chittaranjan Hens3

  • 1Department of Physics, National University of Singapore, Singapore 117551, Singapore
  • 2National Brain Research Centre, Manesar, Gurugram 122051, India
  • 3Center for Computational Natural Sciences and Bioinformatics, International Institute of Information Technology, Gachibowli, Hyderabad 500 032, India
  • 4Department of Mathematics, Jadavpur University, Kolkata 700032, India
  • 5Division of Dynamics, Lodz University of Technology, 90-924 Lodz, Poland

  • *Corresponding authors: ecesuman06@gmail.com; jaba.subrata94@gmail.com

Phys. Rev. E 108, L042201 – Published 26 October, 2023

DOI: https://doi.org/10.1103/PhysRevE.108.L042201

Abstract

Positive phase coupling plays an attractive role in inducing in-phase synchrony in an ensemble of phase oscillators. Positive coupling involving both amplitude and phase continues to be attractive, leading to complete synchrony in identical oscillators (limit cycle or chaotic) or phase coherence in oscillators with heterogeneity of parameters. In contrast, purely positive phase velocity coupling may originate a repulsive effect on pendulumlike oscillators (with rotational motion) to bring them into a state of diametrically opposite phases or a splay state. Negative phase velocity coupling is necessary to induce synchrony or coherence in the general sense. The contrarian roles of phase coupling and phase velocity coupling on the synchrony of networks of second-order phase oscillators have been explored here. We explain our proposition using networks of two model systems, a second-order phase oscillator representing the pendulum or the superconducting Josephson junction dynamics, and a voltage-controlled oscillations in neurons model. Numerical as well as semianalytical approaches are used to confirm our results.

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