Stability of Dissipative Solitons as Solutions of Asymmetrical Complez Cubic-quintic Ginzburg-Landau Equation
The existence and nonlinear dynamics of optical dissipative spatial solitons asymmetrical with respect to transverse coordinates are studied. Steady state solutions of asymmetrical complex cubic-quintic Ginzburg-Landau equation are computed using the variational approach extended in order to treat asymmetrical input. Using established stability criterion a domain of dissipative parameters for stable solitonic solutions is fixed. Analytical predictions are confirmed by numerically simulated evolution of an asymmetrical input pulse towards a stable and robust dissipative soliton.
V. Skarka N. B. Aleksi(c) D. Gauthier D. V. Timotijevic
Laboratoire POMA, UMR 6136 CNRS, Université dAngers 2,boulevard Lavoisier,49045 Angers,Cedex 1,Fran Institute of Physics, Pregrevica 118, 11000 Belgrade, Serbia
国际会议
Progress in Electromagnetics Research Symposium 2007(2007年电磁学研究新进展学术研讨会)(PIERS 2007)
北京
英文
1602-1605
2007-03-26(万方平台首次上网日期,不代表论文的发表时间)