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Mode-locked Yb-doped large-mode-area photonic crystal fiber laser operating in the vicinity of zero cavity dispersion

机译:零腔色散附近工作的锁模掺Yb大模式区光子晶体光纤激光器

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A passively mode-locked ytterbium-doped large-mode-area photonic crystal fiber oscillator operating in the vicinity of zero cavity dispersion is demonstrated. The self-starting mode-locking operation is achieved by a high contrast saturable absorber mirror. Two mode-locking regimes with opposite signs of net cavity dispersion are investigated. At a net cavity dispersion of -0.0035 (ps)~2, the fiber laser directly generates 10-nJ laser pulses with an average power of 630 mW at 65.3 MHz repetition rate. The pulses can be dechirped to 78 fs by extracavity dispersion compensation. The pulse energy is scaled up to 18 nJ, yielding an average power of 1.2 W, when the cavity dispersion is set at 0.0035 (ps)~2. In this regime, the laser output can be extracavity-dechirped to 120 fs. Dynamics of pulse evolution in the fiber laser is illustrated by numerical simulation, which agrees well with experimental results.
机译:演示了一种在零腔色散附近工作的无源锁模掺-大模式面积光子晶体光纤振荡器。通过高对比度的可饱和吸收镜实现自动启动锁模操作。研究了两种具有净腔色散相反符号的锁模方式。在-0.0035(ps)〜2的净腔色散下,光纤激光器以65.3 MHz的重复频率直接产生10-nJ激光脉冲,平均功率为630 mW。可以通过腔外色散补偿将脉冲降低至78 fs。当腔色散设置为0.0035(ps)〜2时,脉冲能量将按比例放大至18 nJ,平均功率为1.2W。在这种情况下,激光输出可以在腔外降低至120 fs。数值模拟表明了光纤激光器中脉冲演化的动力学过程,与实验结果吻合良好。

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