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Volume 37 Issue 4
May  2013
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Third-harmonic generation in AgGaSe2 crystals based on CO2 laser

  • Received Date: 2012-09-17
    Accepted Date: 2012-11-02
  • In order to generate the third harmonic in AgGaSe2 crystals, Ⅰand Ⅱ phase-match were applied for the second and third harmonics of CO2 laser respectively. In the experiment, output wavelength of CO2 laser was 9.6m. The peak power of the second-harmonic at 4.8m was 88kW and the peak power of the third-harmonic at 3.2m was 4kW respectively. The phase-matching acceptance angle was measured. The results show that the second-harmonic wave and the third-harmonic wave are acquired effectively and peak power of the second-harmonic wave and third-harmonic wave increase rapidly with the increase of input power of CO2 laser.
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    TAKAOKA E, KATO K. 90 phase-matched third-harmonic generation of CO2 laser frequencies in AgGa1-xInxSe2 [J]. Optics Letters, 1999, 24(13): 902-904.
    [2]

    BHAR G, KUMBHAKAR P, SATYANARAYANA D, et al. Third harmonic generation of CO2 laser radiation in AgGaSe2 crystal [J]. Pramana, 2000, 55(3): 405-412.
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    WU H X, ZHANG W, TAO D J, et al. Continuous-wave frequency doubling of a tunable CO2 laser in AgGaSe2 [J]. Chinese Journal of Quantum Electronics, 2004, 21(4): 440-443(in Chinese).
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    LI D J, YANG G L, XIE J J, et al. Experiments of second harmonic generation of 9.3m pulsed CO2 lasers [J].Optics and Precision Engineering, 2009, 17(11): 2684-2691(in Chinese).
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    LU Y Zh, WANG X B, ZHU X W, et al. Tunable middle infrared radiation generation in a GaSe crystal[J]. Journal of Applied Physics, 2010, 107(9): 93105.
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    LU Y Zh, WANG X B, MIAO L, et al. Efficient and widely step-tunable terahertz generation with a dual-wavelength CO2 laser [J]. Applied Physics,2011,B103(2): 387-390.
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    LU Y Zh, WANG X B, MIAO L, et al. Third-harmonic and fourth-harmonic generations of CO2 laser radiation in a GaSe crystal [J]. Optics Communications, 2011, 284(14): 3622-3625.
    [8]

    LU Y Zh, WANG X B, MIAO L, et al. Terahertz generation in nonlinear crystals with mid-infrared CO2 laser [J]. Chinese Physics Letters, 2011, 28(3):34201.
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    RAO Zh M, WANG X B, LU Y Zh. Tunable terahertz generation from one CO2 laser in a GaSe crystal [J]. Optics Communications, 2011, 284(23): 5472-5474.
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    RAO Zh M, WANG X B, LU Y Zh, et al. Two schemes for generating efficient terahertz waves in nonlinear optical crystals with mid-infrared CO2 laser [J]. Chinese Physics Letters, 2011, 28(7):074215.
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    LU Y Zh, WANG X B, DONG G, et al. Pulse characteristics of a dual-wavelength tunable TEA CO2 laser [J].Laser Technology, 2010, 34(1): 88-90(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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Third-harmonic generation in AgGaSe2 crystals based on CO2 laser

  • 1. Wuhan National Laboratory for Optoelectronics, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan 430074, China;
  • 2. Department of Computer Science, Jiangxi University of Traditional Chinese Medicine, Nanchang 330004, China

Abstract: In order to generate the third harmonic in AgGaSe2 crystals, Ⅰand Ⅱ phase-match were applied for the second and third harmonics of CO2 laser respectively. In the experiment, output wavelength of CO2 laser was 9.6m. The peak power of the second-harmonic at 4.8m was 88kW and the peak power of the third-harmonic at 3.2m was 4kW respectively. The phase-matching acceptance angle was measured. The results show that the second-harmonic wave and the third-harmonic wave are acquired effectively and peak power of the second-harmonic wave and third-harmonic wave increase rapidly with the increase of input power of CO2 laser.

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