Spiking ruby revisited: self-induced periodic spiking oscillations leading to chaotic state in a Cr:Al₂O₃ laser with cw 532-nm pumping

IF 1.1 Q4 OPTICS
K. Otsuka, S. Sudo
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引用次数: 0

Abstract

This paper reexamines a 60 year old mystery of spiking behavior in ruby lasers with a cw 532 nm pump, paying special attention to mode matching between the pump and lasing beam within a ruby crystal placed in a semi-confocal laser cavity. Periodic spiking oscillations were observed in a limited pump power regime, where spikes obeying the generic asymmetric hyperbolic function appeared at a repetition rate around 50 kHz and with a 130-150 ns width and 0.1-0.6 microjoule energy depending on the pump power. The physics of the spiking behavior based on Kleinman's mechanical approach and a plausible interpretation for the periodic spiking oscillation in terms of self-induced mode matching between the pump and laser beams through the self-induced Kerr-lens effect are addressed. The statistical nature inherent to spiking and the associated self-organized critical behavior in quasi-periodic spiking oscillations as well as chaotic states occurring outside the periodic spiking regime are also explored from a nonlinear dynamics point of view.
重新审视尖峰红宝石:导致Cr:Al混沌状态的自发周期性尖峰振荡₂O₃ 532nm连续泵浦激光器
本文重新审视了一个60年前的谜,即用连续532nm泵浦的红宝石激光器中的尖峰行为,特别注意放置在半共焦激光腔中的红宝石晶体中泵浦和激光束之间的模式匹配。在有限的泵浦功率范围内观察到周期性尖峰振荡,其中服从一般不对称双曲函数的尖峰以大约50kHz的重复频率出现,具有130-150ns的宽度和0.1-0.6微焦耳的能量,这取决于泵浦功率。基于Kleinman的力学方法的尖峰行为的物理性质,以及通过自感克尔透镜效应在泵浦和激光束之间的自感模式匹配方面对周期性尖峰振荡的合理解释。还从非线性动力学的角度探讨了准周期性尖峰振荡中尖峰固有的统计性质和相关的自组织临界行为,以及在周期性尖峰机制之外发生的混沌状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.50
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0.00%
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