Sergeyev Sergey V
Opt Lett. 2016 Oct 15;41(20):4700-4703. doi: 10.1364/OL.41.004700.
Insight into instabilities of fiber laser regimes leading to complex self-pulsing operations is an opportunity to unlock the high power and dynamic operation tunability of lasers. Though many models have been suggested, there is no complete covering of self-pulsing complexity observed experimentally. Here, I further generalized our previous vector model of erbium-doped fiber laser and, for the first time, to the best of my knowledge, map tunability of complex vector self-pulsing on Poincare sphere (limit cycles and double scroll polarization attractors) for laser parameters, e.g., power, ellipticity of the pump wave, and in-cavity birefringence. Analysis validated by extensive numerical simulations demonstrates good correspondence to the experimental results on complex self-pulsing regimes obtained by many authors during the last 20 years.
深入了解导致复杂自脉冲操作的光纤激光状态的不稳定性,是解锁激光器高功率和动态操作可调性的一个契机。尽管已经提出了许多模型,但对于实验中观察到的自脉冲复杂性并没有完全涵盖。在此,我进一步推广了我们之前的掺铒光纤激光器矢量模型,并且据我所知首次将复杂矢量自脉冲的可调性映射到庞加莱球(极限环和双涡旋偏振吸引子)上,以研究诸如功率、泵浦波椭圆率和腔内双折射等激光参数。通过广泛的数值模拟验证的分析表明,与许多作者在过去20年中获得的关于复杂自脉冲状态的实验结果具有良好的一致性。