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锁模激光器中多脉冲的跃迁动力学。

Transition dynamics for multi-pulsing in mode-locked lasers.

作者信息

Bale Brandon G, Kieu Khanh, Kutz J Nathan, Wise Frank

机构信息

Photonics Research Group, School of Engineering and Applied Science, Aston University, Birmingham B4 7ET, UK.

出版信息

Opt Express. 2009 Dec 7;17(25):23137-46. doi: 10.1364/OE.17.023137.

Abstract

We consider experimentally and theoretically a refined parameter space in a laser system near the transition to multi-pulse modelocking. Near the transition, the onset of instability is initiated by a Hopf (periodic) bifurcation. As the cavity energy is increased, the band of unstable, oscillatory modes generates a chaotic behavior between single- and multi-pulse operation. Both theory and experiment are in good qualitative agreement and they suggest that the phenomenon is of a universal nature in mode-locked lasers at the onset of multi-pulsing from N to N +1 pulses per round trip. This is the first theoretical and experimental characterization of the transition behavior, made possible by a highly refined tuning of the gain pump level.

摘要

我们从实验和理论两方面研究了激光系统中接近向多脉冲锁模转变时的精细参数空间。在转变附近,不稳定性的起始由霍普夫(周期)分岔引发。随着腔能量增加,不稳定的振荡模式带在单脉冲和多脉冲运转之间产生混沌行为。理论和实验在定性上吻合良好,它们表明该现象在往返每轮从N个脉冲到N + 1个脉冲的多脉冲锁模激光器起始阶段具有普遍性质。这是对转变行为的首次理论和实验表征,通过对增益泵浦水平的高度精细调谐得以实现。

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