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低重频高能脉冲多级光纤MOPA系统的优化设计 被引量:3

Optimizing design of low-repetition-frequency high-energy pulse amplification in multi-stage fiber MOPA system
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摘要 根据低重频高能脉冲多级光纤主振荡功率放大(MOPA)系统的模型,建立了多级光纤MOPA系统的速率方程和功率传递方程,并提出了一种多级光纤MOPA系统的优化方法。与传统的单个光纤放大器的优化方法相比,该方法把每一级放大器作为系统的一部分,并通过对整个系统结果的分析来优化每一级放大器的参数。对一个两级掺Yb光纤MOPA系统进行了优化模拟计算,在获得基本相同的输出脉冲能量条件下,使用多级光纤MOPA系统优化方法计算得到的第一级光纤优化长度和泵浦功率分别比用传统优化方法得到的结果短3m和低69.1W。基于该优化方法,第二级放大器的参数和种子光峰值功率也得到了优化。结果表明:在对多级光纤MOPA系统进行优化时,传统的单光纤放大器优化方法被系统优化方法代替,是用最低成本获得高能量转换效率的保证。 According to the model of low-repetition-frequency high-energy pulse amplification in multi-stage fiber master-oscillator-power-amplifier(MOPA) system,the rate and power transfer equations of the MOPA system were constructed,and a new optimal method for the MOPA system was proposed.Compared with the traditional optimal method for single fiber amplifier,the new method considered every amplifier as a part of the whole system and it was optimized by analyzing the whole system.As an example,a two-stage Yb-doped fiber MOPA system was optimized.Under the conditions of almost equal output energy,the optimal fiber length and pump power of the first stage calculated by the proposed method could be 3 m shorter and 69.1 W lower than those calculated by the traditional one,respectively.In addition,based on the new method,parameters of the second stage amplifier and peak power of the seed light source could also be optimized.The result shows that traditional optimal method should be replaced by the proposed method,in order to ensure to achieve a high-energy transfer efficiency at the lowest cost.
出处 《红外与激光工程》 EI CSCD 北大核心 2010年第1期97-102,共6页 Infrared and Laser Engineering
基金 中国博士后基金资助项目(20090451417)
关键词 光纤放大器 脉冲放大 MOPA系统 速率方程 Fiber amplifier Pulse amplification MOPA system Rate equation
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参考文献8

  • 1DIGONNET M J F.Rare-Earth-Doped Fiber Lasers and Amplifiers[M].New York:Marcel Dekker.2001.
  • 2DESTHIEUX B,LAMING R L,PAYNE D N.111 kW (0.5 mJ)pulse amplification at 1.5 μm using a gated cascade of three erbium-doped fiber amplifiers[J].Applied Physics Letters,1993,63(5):586-588.
  • 3CHRISTOPHER B,FAB10 D T.1-mJ energy.1-MW peak-power,10-W average-power,spectrally narrow,diffraction-limited pulses from a photonic-crystal fiber amplifier[J].Optics Express,2005,13(22):8999-9002.
  • 4SEBASTIEN D,FABIO D T.High-gain Er-doped fiber amplifier generating eye-safe MW peak-power,mJ-energy pulses[J].Optics Express,2008,16(4):2431-2437.
  • 5CHENG M Y,CHANG Y-C,GALVANAUSKAS A.et al.High-energy and high-peak-power nanosecond pulse generation with beam quality control in 200-μm core highly multimode Yb-doped fiber amplifiers[J].Optics Letters,2005,30(4):358-360.
  • 6NILSSON J,JASKORZYNSKA B.Modefing and optimization of low-repetition-rate high-energy pulse amplification in cw-pumped erbium-doped fiber amplifiers[J].Optics Letters,1993,18(24):2099-2101.
  • 7WANG Y,PO H.Dynamic characteristics of doubleclad fiber ampifiers for high-power pulse amplification[J].IEEE Jounal Lightwave Technol,2003,21(10):2262-2270.
  • 8CHANG Li-ping,FAN Wei,CHEN Jia-lin,et al.High power pulse amplification of ytterbium-doped doubleclad fiber amplifier[J].Chinese Optics Letters,2007,11(5):624-626.

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