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Impact of Self-Steepening on the Dynamics of a Passively Modelocked Fiber Laser containing a Long Period FiberGrating

机译:自增强对包含长期光纤光栅的被动对接式光纤激光器动力学的影响

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We report on a numerical investigation of the effect of self-steepening on the dynamics of a passively modelocked fiber laser containing a long period fiber grating. The numerical model is based on the normalized complex Ginzburg-Landau equation and the nonlinear coupled mode equations of the grating. The nonlinear dynamics of the laser are observed through plotting the pulse energy against the linearly increasing gain so obtaining bifurcation diagrams. The inclusion of self-steepening was found to result in a temporal walk-off with no significant pulse width or energy alternations, while exhibiting different regions of period doubling bifurcation.
机译:我们报告了一个自激效应对包含一个长周期光纤光栅的被动模架式光纤激光器的动力学影响的数值研究。数值模型基于归一化复数Ginzburg-Landau方程和光栅的非线性耦合模式方程。通过将脉冲能量相对于线性增加的增益作图,可以观察到激光器的非线性动力学特性,从而获得分叉图。发现包括自增强在内导致了时间上的偏离,没有明显的脉冲宽度或能量交替,同时表现出周期倍增分叉的不同区域。

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