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Automated correlation dimension analysis of optically injected solid state lasers.

J P Toomey1, D M Kane, S Valling

  • 1Physics Department, Macquarie University, Sydney, NSW 2109, Australia. jtoomey@science.mq.edu.au

Optics Express
|April 29, 2009
PubMed
Summary
This summary is machine-generated.

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We analyzed the dynamical complexity of nonlinear lasers using correlation dimension mapping. This technique accurately reflects the laser

Area of Science:

  • Physics
  • Nonlinear Dynamics
  • Laser Physics

Background:

  • Nonlinear lasers provide high-quality data for analyzing complex dynamics.
  • Understanding laser dynamics is crucial for developing advanced analysis techniques.

Purpose of the Study:

  • To investigate the dynamical complexity of an optically injected Nd:YVO(4) solid-state laser.
  • To develop and demonstrate robust nonlinear dynamics analysis techniques using experimental data.

Main Methods:

  • Experimental data acquisition from an optically injected Nd:YVO(4) solid-state laser.
  • Calculation of the correlation dimension map from laser output power time-series data.
  • Development of an automated computational protocol for data analysis.

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Main Results:

  • A correlation dimension map was generated as a function of injection strength and frequency detuning.
  • The experimental correlation dimension map closely matched the dynamics map from a theoretical model.
  • The correlation dimension map was contrasted with peak intensity mapping from prior research.

Conclusions:

  • Correlation dimension mapping is an effective method for characterizing the dynamical states of nonlinear lasers.
  • The developed automated protocol enables robust analysis of laser dynamics.
  • This approach offers a valuable tool for understanding and controlling nonlinear laser systems.