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Mechanism of Dissipative-Soliton-Resonance Generation in Passively Mode-Locked All-Normal-Dispersion Fiber Lasers

机译:被动锁模全法向色散光纤激光器中耗散孤子共振产生的机理

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摘要

Numerical simulations on dissipative-soliton-resonance generation in an all-normal-dispersion fiber ring laser are presented. Situations with monotonic and periodical saturable absorption are both considered. The multipulse operation in dissipative soliton laser is found to be caused by the spectral filtering effect that limits the spectral maximum width, and the multipulsing can be fully circumvent by inducing strong peak-power-clamping effect of a sinusoidal saturable absorber in the cavity. When the cavity peak-power-clamping effect is strong enough that the pulse peak power and the pulse spectral width are both confined at a low value, the spectral filtering effect induced multipulse operation is prevented and the dissipative-soliton-resonance is generated. Otherwise, the spectral filtering effect causes pulse breaking before the pulse peak power reaches the saturation point. Further results show that under the dissipative-soliton-resonance, the generated pulse peak power can be directly controlled by the cavity peak-power-clamping effect, which is determined by the saturation power of the saturable absorber.
机译:提出了全正色散光纤环形激光器中耗散孤子共振产生的数值模拟。均考虑具有单调和周期性饱和吸收的情况。发现耗散孤子激光器中的多脉冲操作是由限制光谱最大宽度的光谱滤波效应引起的,并且可以通过在腔中引起正弦形可饱和吸收体的强峰值功率钳位效应来完全规避多脉冲。当腔的峰值功率钳位效应足够强以至于将脉冲峰值功率和脉冲频谱宽度都限制在一个较低的值时,将阻止频谱滤波效应引起的多脉冲操作,并产生耗散孤子共振。否则,频谱滤波效应会在脉冲峰值功率达到饱和点之前导致脉冲中断。进一步的结果表明,在耗散孤子谐振下,产生的脉冲峰值功率可以直接由腔的峰值功率钳制效应控制,该效应由可饱和吸收体的饱和功率决定。

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