Impact of symmetry breaking in networks of globally coupled oscillators

K. Premalatha, V. K. Chandrasekar, M. Senthilvelan, and M. Lakshmanan
Phys. Rev. E 91, 052915 – Published 20 May 2015

Abstract

We analyze the consequences of symmetry breaking in the coupling in a network of globally coupled identical Stuart-Landau oscillators. We observe that symmetry breaking leads to increased disorderliness in the dynamical behavior of oscillatory states and consequently results in a rich variety of dynamical states. Depending on the strength of the nonisochronicity parameter, we find various dynamical states such as amplitude chimera, amplitude cluster, frequency chimera, and frequency cluster states. In addition we also find disparate transition routes to recently observed chimera death states in the presence of symmetry breaking even with global coupling. We also analytically verify the chimera death region, which corroborates the numerical results. These results are compared with that of the symmetry-preserving case as well.

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  • Received 18 February 2015

DOI:https://doi.org/10.1103/PhysRevE.91.052915

©2015 American Physical Society

Authors & Affiliations

K. Premalatha1, V. K. Chandrasekar2, M. Senthilvelan1, and M. Lakshmanan1

  • 1Centre for Nonlinear Dynamics, School of Physics, Bharathidasan University, Tiruchirappalli 620 024, Tamil Nadu, India
  • 2Centre for Nonlinear Science & Engineering, School of Electrical & Electronics Engineering, SASTRA University, Thanjavur 613 401, Tamilnadu, India

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Vol. 91, Iss. 5 — May 2015

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