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Volume 35 Issue 1
Jan.  2016
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Model of 60W picosecond laser oscillator pumped by 888nm LD

  • Received Date: 2010-03-09
    Accepted Date: 2010-04-02
  • A theoretical model of high power and high efficiency picosecond laser oscillator pumped by 888nm LD was fabricated. Based on simulation calculation, resonance theory, ABCD law, self-consistent condition and continuous passive mode locking condition, absorption property of crystal Nd:YVO4 at 888nm wavelength, appropriate element parameters and mode parameters, and mode locking parameters were analyzed and calculated. Parameters of a model of picosecond laser oscillator were obtained based on the above calculated results. The results indicate that 61.5W high average power can be generated with 120W pump power and optical to optical conversion efficiency is 51.3%. The model helps for experiment on picosecond laser oscillator with high average power.
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  • [1]

    CHEN C.Recent advances in deep and vacuum-UV harmonic generation with KBBF crystal[J].Optical Materials,2004,26(4):425-429.
    [2]

    ZHANG W,LIU G,ZHAO L,et al.Identification of a new form of electron coupling in Bi2Sr2CaCu2O8 superconductor by laser-based angle-resolved photoemission[J].Physical Review Letters,2008,100(10):107002.
    [3]

    HONNINGER C,PASCHOTTA R,MORIER-GENOUD F,et al.Q-switching stability limits of continuous-wave passive mode locking[J].Journal of the Optical Society of America,1999,B16(1):46-56.
    [4]

    DYMOTT M,WEINGATTEN K.Picosecond diode-pumped laser system with 9.3W average power and 2.3mJ pulse energy[J].Applied Optics,2001,40(18):3042-3045.
    [5]

    MCDONAGH L,WALLENSTEIN R,NEBEL A.111W,110MHz repetition-rate,passively mode-locked TEM00 Nd:YVO4 master oscillator power amplifier pumped at 888nm[J].Optics Letters,2007,32(10):1259-1261.
    [6]

    HONG K,SIDDIQUI A,MOSES J,et al.Generation of 287W,5.5 ps pulses at 78MHz repetition rate from a cryogenically cooled Yb:YAG amplifier seeded by a fiber chirped-pulse amplification system[J].Optics Letters,2008,33(21):2473-2475.
    [7]

    PENG R W,GUO L,ZHANG X F,et al.43W picosecond laser and second-harmonic generation experiment[J].Optics Communications,2009,282(4):611-613.
    [8]

    ZHANG X F,ZEHGN Y,LI A P,et al.Effect of picosecond pulse compression in photonic crystal fibers[J].Laser Technology,2007,31(3):268-270(in Chinese).
    [9]

    LI L W,WANG J X,WANG J J.Study on passive mode-lock of pulsed Nd:YAG laser with SESAM[J].Laser Technology,2008,32(3):296-298(in Chinese).
    [10]

    McDONAGH L,WALLENSTEIN R,KNAPPE R,et al.High-efficiency 60W TEM00 Nd:YVO4 oscillator pumped at 888nm[J].Optics Letters,2006,31(22):3297-3299.
    [11]

    SIEGMAN A E.Lasers [M].Mill Valley,California:University Science Books,1986:816-819.
    [12]

    KOECHNER W.Solid-state lasers engineering[M].Beijing:Science Press,2003:85-98(in Chinese).
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Model of 60W picosecond laser oscillator pumped by 888nm LD

  • 1. Department of Physios and Electronic Science, Changsha University of Science and Technology, Changsha 410114, China;
  • 2. Laboratory of Optical Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100083, China

Abstract: A theoretical model of high power and high efficiency picosecond laser oscillator pumped by 888nm LD was fabricated. Based on simulation calculation, resonance theory, ABCD law, self-consistent condition and continuous passive mode locking condition, absorption property of crystal Nd:YVO4 at 888nm wavelength, appropriate element parameters and mode parameters, and mode locking parameters were analyzed and calculated. Parameters of a model of picosecond laser oscillator were obtained based on the above calculated results. The results indicate that 61.5W high average power can be generated with 120W pump power and optical to optical conversion efficiency is 51.3%. The model helps for experiment on picosecond laser oscillator with high average power.

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