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All-optical chaos synchronization between nonidentical optomechanical cavities.

Souvik Mondal1, Murilo S Baptista2, Kapil Debnath2

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Chaos synchronization in optomechanical cavities is now possible even with different parameters. This study shows that parameter heterogeneity can enable stable complete synchronization in coupled optomechanical systems.

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Area of Science:

  • Nonlinear Optics
  • Quantum Optics
  • Cavity Optomechanics

Background:

  • Optomechanical cavities offer compact chaos generation via nonlinear photon-phonon interactions.
  • Chaos synchronization in coupled optomechanical systems remains underexplored.

Purpose of the Study:

  • To theoretically investigate all-optical complete synchronization between unidirectionally coupled optomechanical cavities.
  • To explore the role of parameter heterogeneity in achieving stable synchronization.

Main Methods:

  • Theoretical investigation of unidirectionally coupled optomechanical cavities in a master-slave configuration.
  • Analysis of nonlinear photon-phonon interactions within the cavities.

Main Results:

  • Complete synchronization achieved between coupled optomechanical cavities.
  • Parameter heterogeneity, contrary to traditional assumptions, enables and stabilizes complete synchronization.

Conclusions:

  • Parameter heterogeneity is a viable mechanism for achieving stable complete synchronization in optomechanical systems.
  • This work opens new avenues for controlling chaos in nonlinear optical systems.