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Principal Component Analysis for Low-dimensional Modeling of Mode-locked Lasers

机译:模式锁定激光器低维建模的主成分分析

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The ubiquitous onset of multi-pulsing in a laser cavity is considered in two representative laser models. Using a low-dimensional reduction constructed by the method of proper orthogonal decomposition (principal components), a complete characterization of the multi-pulsing transition is given, including the onset of periodic (Hopf) solutions and a period doubling and Neimark-Sacker (torus) bifurcation route to chaos. This is the first low-dimensional construction of the entire multi-pulsing transition from N to N + 1 pulses per round trip. The reduced model qualitatively reproduces the dynamics observed in the multi-pulse transition of the mode-locked laser and confirms recent experimental observations of periodic and chaotic behavior proceeding the multi-pulsing transition.
机译:在两个代表性的激光模型中考虑激光腔中的多脉冲中的无处不在的多脉冲发作。使用由适当正交分解的方法构造的低维减少(主组件),给出了多脉冲转换的完整表征,包括周期性(HOPF)解决方案的开始和一段倍增和Neimark-Sacker(Torus )到混乱的分叉路线。这是每次往返N到N + 1脉冲的整个多脉冲过渡的第一低维构造。降低的模型定性地再现了模式锁定激光的多脉冲转变中观察到的动态,并确认了期间周期性和混沌行为的实验观察,并进行多脉冲转变。

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