Journal of Applied Mathematics and Physics

Volume 3, Issue 10 (October 2015)

ISSN Print: 2327-4352   ISSN Online: 2327-4379

Google-based Impact Factor: 0.70  Citations  

Efficient Approach for 3D Stationary Optical Solitons in Dissipative Systems

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DOI: 10.4236/jamp.2015.310152    2,544 Downloads   3,239 Views  Citations

ABSTRACT

We feature the stationary solutions of the 3D complex cubic-quintic Ginzburg-Landau equation (CGLE). Our approach is based on collective variables approach which helps to obtain a system of variational equations, giving the evolution of the light pulses parameters as a function of the propagation distance. The collective variables approach permits us to obtain, efficiently, a global mapping of the 3D stationary dissipative solitons. In addition it allows describing the influence of the parameters of the equation on the various physical parameters of the pulse and their dynamics. Thus it helps to show the impact of dispersion and nonlinear gain on the stationary dynamic.

Share and Cite:

Konaté, A. , Soro, E. , Asseu, O. , Kamagaté, A. and Yoboué, P. (2015) Efficient Approach for 3D Stationary Optical Solitons in Dissipative Systems. Journal of Applied Mathematics and Physics, 3, 1239-1248. doi: 10.4236/jamp.2015.310152.

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