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High-energy femtosecond photonic crystal fiber laser

机译:高能飞秒光子晶体光纤激光器

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摘要

We report the generation of high-energy high-peak power pulses in an all-normal dispersion fiber laser featuring large-mode-area photonic crystal fibers. The self-starting chirped-pulse fiber oscillator delivers 11 W of average power at 15.5 MHz repetition rate, resulting in 710 nJ of pulse energy. The output pulses are dechirped outside the cavity from 7 ps to nearly transform-limited duration of 300 fs, leading to pulse peak powers as high as 1.9 MW. Numerical simulations reveal that pulse shaping is dominated by the amplitude modulation and spectral filtering provided by a resonant semiconductor saturable absorber.
机译:我们报告了在具有大模态面积光子晶体光纤的全常规色散光纤激光器中产生的高能量高峰值功率脉冲。自启动chi脉冲光纤振荡器以15.5 MHz的重复频率提供11 W的平均功率,从而产生710 nJ的脉冲能量。输出脉冲在模腔外部从7 ps降低到300 fs的几乎受变换限制的持续时间,导致脉冲峰值功率高达1.9 MW。数值模拟表明,脉冲整形主要由谐振半导体可饱和吸收器提供的振幅调制和频谱滤波控制。

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