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The critical role of intracavity dynamics in high-power mode-locked fiber lasers

机译:腔内动力学在高功率锁模光纤激光器中的关键作用

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We present a theoretical description of the generation of ultra-short, high-energy pulses in two laser cavities driven by periodic spectral filtering or dispersion management. Critical in driving the intra-cavity dynamics is the nontrivial phase profiles generated and their periodic modification from either spectral filtering or dispersion management. For laser cavities with a spectral filter, the theory gives a simple geometrical description of the intra-cavity dynamics and provides a simple and efficient method for optimizing the laser cavity performance. In the dispersion managed cavity, analysis shows the generated self-similar behavior to be governed by the porous media equation with a rapidly-varying, mean-zero diffusion coefficient whose solution is the well-known Barenblatt similarity solution with parabolic profile.
机译:我们介绍了在由周期性光谱滤波或色散管理驱动的两个激光腔中产生超短,高能脉冲的理论描述。在驱动腔内动力学方面至关重要的是生成的非平凡相位分布图以及它们从频谱滤波或色散管理中进行的周期性修改。对于带有光谱滤波器的激光腔,该理论给出了腔内动力学的简单几何描述,并提供了一种简单有效的方法来优化激光腔性能。在色散管理型腔中,分析表明,所生成的自相似行为受具有快速变化的均值零扩散系数的多孔介质方程支配,该方程的解是众所周知的具有抛物线轮廓的Barenblatt相似解。

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