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Experiment and modeling of passively Q-switched ytterbium doped double-clad fiber lasers.

机译:被动调Q掺双包层光纤激光器的实验与建模。

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摘要

High power passively Q-switched fiber lasers have been demonstrated with different ytterbium doped double-clad fibers by using Cr4+:YAG saturable absorber. With small (5.4 mum) and medium (10 mum) core fibers, single mode outputs have been obtained with pulse energy of tens of muJ, pulse duration of the order of a hundred nanoseconds and pulse-repetition-rate of up to 300 kHz. A theoretical model is developed to predict the laser spectrum and numerically simulate the output characteristics versus pump power. The focused beam in the Cr4+:YAG crystal is assumed to have a Gaussian profile and is analyzed using traveling wave rate equations. The effect of amplified spontaneous emission is also investigated in the simulation, which shows reasonable agreement with experimental observations. With large-mode-area (25 mum) polarization maintaining ytterbium doped fiber, the Q-switched output shows stimulated Brillouin scattering. Linearly polarized output with >300 kW peak power and a pulse duration as short as 490 ps have been obtained. A theoretical model is developed to simulate passive Q-switching with the stimulated Brillouin scattering, which shows good agreement with the experiment.;A compact, adjustment free self Q-switched ytterbium doped fiber laser has been demonstrated with fiber ring mirror, in which cooperative Rayleigh-Brillouin scattering was employed as a gain switching mechanism. As short as 600 ps pulses have been obtained at both stimulated Brillouin and Raman frequencies, with peak powers estimated to be up to 26 kW and 5 kW, respectively.;A high power two-wavelength passively Q-switched Yb doped fiber laser has been achieved with a very simple cavity configuration. Single transverse mode output at 1040 nm and 1070 nm was obtained with tens of muJ pulse energies and hundred nanosecond pulse durations. Modeling of the transient build up of the free-running laser shows the two-wavelength behavior can be attributed to the existence of two gain peaks of Yb-doped fiber under intermediate pump conditions. A theoretical simulation model qualitatively explains the dynamics of the two-wavelength Q-switching behavior observed in the experiment indicating that longer fibers and higher pump powers favor 1070 nm laser output and reproduces the pulse pattern where two wavelength pulses alternate at an intermediate pump power.
机译:高功率无源调Q光纤激光器已通过使用Cr4 +:YAG饱和吸收体与不同的掺ped双包层光纤进行了演示。使用小型(5.4微米)和中型(10微米)纤芯光纤,可以获得单模输出,其脉冲能量为数十微焦耳,脉冲持续时间为数百纳秒,脉冲重复率高达300 kHz。建立了理论模型来预测激光光谱,并数值模拟输出特性与泵浦功率的关系。假定Cr4 +:YAG晶体中的聚焦光束具有高斯分布,并使用行波速率方程进行分析。在模拟中还研究了放大的自发发射的影响,这与实验观察结果显示出合理的一致性。大模态区域(25微米)偏振态保持掺maintaining光纤,调Q输出显示出受激布里渊散射。线性极化输出的峰值功率> 300 kW,脉冲持续时间短至490 ps。建立了理论模型来模拟无源调Q的布里渊散射,与实验结果吻合良好。;采用光纤环形反射镜证明了紧凑,免调的自调Q掺fiber光纤激光器。瑞利-布里渊散射被用作增益切换机制。在受激布里渊和拉曼频率上均获得了600 ps的短脉冲,峰值功率分别估计高达26 kW和5 kW .;高功率两波长无源调Q掺Yb掺杂光纤激光器通过非常简单的腔体配置即可实现。以数十个muJ脉冲能量和一百纳秒的脉冲持续时间获得了1040 nm和1070 nm的单横模输出。自由运行激光器瞬态建立的模型表明,在中间泵浦条件下,两个波长的行为可归因于掺Yb光纤的两个增益峰的存在。理论仿真模型定性地解释了在实验中观察到的两波长Q开关行为的动力学,表明较长的光纤和较高的泵浦功率有利于1070 nm激光输出,并再现了其中两个波长脉冲以中间泵浦功率交替的脉冲模式。

著录项

  • 作者

    Pan, Lei.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 191 p.
  • 总页数 191
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学;
  • 关键词

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