Nonlinear dynamics of laser systems with elements of a chaos: Advanced computational code

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Abstract

A general, uniform chaos-geometric computational approach to analysis, modelling and prediction of the non-linear dynamics of quantum and laser systems (laser and quantum generators system etc) with elements of the deterministic chaos is briefly presented. The approach is based on using the advanced generalized techniques such as the wavelet analysis, multi-fractal formalism, mutual information approach, correlation integral analysis, false nearest neighbour algorithm, the Lyapunov's exponents analysis, and surrogate data method, prediction models etc There are firstly presented the numerical data on the topological and dynamical invariants (in particular, the correlation, embedding, Kaplan-York dimensions, the Lyapunov's exponents, Kolmogorov's entropy and other parameters) for laser system (the semiconductor GaAs/GaAlAs laser with a retarded feedback) dynamics in a chaotic and hyperchaotic regimes.

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Buyadzhi, V. V., Glushkov, A. V., Yu Khetselius, O., Kuznetsova, A. A., Buyadzhi, A. A., Prepelitsa, G. P., & Ternovsky, V. B. (2017). Nonlinear dynamics of laser systems with elements of a chaos: Advanced computational code. In Journal of Physics: Conference Series (Vol. 905). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/905/1/012007

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