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Optical rogue waves in the solid-state laser with a saturable absorber

机译:带有饱和吸收器的固态激光器中的光流浪

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We study the features of the optical rogue waves (ORW) observed in an all-solid-state (diode-pumped, Cr:YAG+Nd:YVO4) passively-Q-switched laser, which is a system of wide practical interest. The extreme events appear during the chaotic and hyper-chaotic regimes of this laser, in one of two forms: 1) as isolated pulses of large intensity (“Intensity ORW”) or: 2) as a long time between pulses (“Time ORW”). These two types of extreme events are not correlated (i.e., an I-ORW is not always preceded or followed by a T-ORW). The standard theoretical description of this laser system (three-level rate equations for a single mode of the field and a two-level system for the absorber) is not able to predict these phenomena, not even the mere existence of ORW. Faced with the problem of improving the theoretical description, we find that ORW are observed if the Fresnel number of the laser cavity and the embedding dimension of the attractor reconstructed from the experimental time series are high, and the laser spot profile presents a spatially complex structure. These results suggest that the spatial effects are an essential ingredient in the formation of ORW in this type of lasers.
机译:我们研究了在全固态(二极管泵浦,Cr:YAG + Nd:YVO4)被动调Q激光器中观察到的光学流氓波(ORW)的特性,这是一个具有广泛实际意义的系统。极端事件在此激光器的混沌和超混沌状态期间以两种形式之一出现:1)大强度的孤立脉冲(“ Intensity ORW”);或2)两次脉冲之间的较长时间(“ Time ORW”) ”)。这两种极端事件是不相关的(即I-ORW并不总是在T-ORW之前或之后)。该激光系统的标准理论描述(用于单模场的三能级速率方程和用于吸收体的两能级系统)无法预测这些现象,甚至无法预测ORW的存在。面对改进理论描述的问题,我们发现,如果从实验时间序列重建的激光腔的菲涅耳数和吸引子的嵌入尺寸较高,并且激光光斑轮廓呈现出空间复杂的结构,则可以观察到ORW 。这些结果表明,空间效应是这类激光器中ORW形成的重要因素。

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