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Comprehensive Theoretical and Experimental Study of Short- and Long-Term Stability in a Passively Mode-Locked Solitonic Fiber Laser

机译:被动锁模孤子光纤激光器短期和长期稳定性的综合理论和实验研究

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摘要

We demonstrate the short- and long-term stable operation of an all-polarization-maintained Fabry–Pérot cavity passively mode-locked fiber laser. The laser operates in an all-anomalous-dispersion solitonic regime. Laser stability is studied by a variety of measurements, which confirm the high stability of the laser in the temporal and spectral–both optical and electrical-domains. Pulse durations of 540 fs, period-relative time jitters of 0.015‰, and long-term uninterrumped operation with 0.4% variation (standard deviation) in the average output power are obtained. The highly stable operation of the laser oscillator was maintained after amplifying the laser output with a conventional EDFA. Pulse durations of 244 fs, period-relative time jitters of 0.019‰,  and an average output power of 20 mW were obtained after amplification, while maintaining the 100-dB signal-to-noise ratio of the laser oscillator measured at 500-Hz offset from the fundamental harmonic frequency. The theoretical validation of our experimental results is based on solutions of the Nonlinear Schrödinger Equation. We demonstrate that wavelength and -position dependences of the active medium gain must be taken into account for an accurate correspondence with the experimental properties of the laser.
机译:我们演示了全偏振保持的Fabry-Pérot腔被动锁模光纤激光器的短期和长期稳定运行。激光在全异常色散的孤子状态下工作。通过各种测量研究了激光的稳定性,这些测量证实了激光在时间和光谱方面的高稳定性,包括光学和电学领域。获得了540 fs的脉冲持续时间,0.015‰的周期相对时间抖动以及平均输出功率变化0.4%(标准偏差)的长期无干扰运行。用传统的EDFA放大激光输出后,激光振荡器保持了高度稳定的操作。放大后获得的脉冲持续时间为244 fs,相对时间抖动为0.019‰,平均输出功率为20 mW,同时在500 Hz偏移下保持测量的激光振荡器的信噪比为100 dB从基波谐波频率开始。我们的实验结果的理论验证是基于非线性Schrödinger方程的解。我们证明,必须将有效介质增益的波长和位置相关性考虑在内,才能与激光器的实验特性精确对应。

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