• Infrared and Laser Engineering
  • Vol. 45, Issue 6, 606006 (2016)
Huangfu Junqiang1、*, Jia Haixu2, Yang Lili1, and Ding Shuanghong1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/irla201645.0606006 Cite this Article
    Huangfu Junqiang, Jia Haixu, Yang Lili, Ding Shuanghong. Rate equation theory of LD pumped passively Q-switched intracavity sum-frequency Raman laser[J]. Infrared and Laser Engineering, 2016, 45(6): 606006 Copy Citation Text show less
    References

    [1] Lee A J, Pask H M, Spence D J, et al. Efficient 5.3 W cw laser at 559 nm by intracavity frequency summation of fundamental and first-Stokes wavelengths in a self-Raman Nd:GdVO4 laser[J]. Optics Letters, 2010, 35(5): 682-684.

    [2] Liang W, Zhang X H, Xia J. Efficient continuouswave laser at 560 nm by intracavity frequency summation of fundamental and first-Stokes wavelengths in Nd:YVO4-BaWO4 Raman laser[J]. Laser Physics, 2011, 21(4): 667-669.

    [3] Tan Y, Fu X, Zhai P, et al. An efficient cw laser at 560 nm by intracavity sum-frequency mixing in a self-Raman Nd:LuVO4 laser[J]. Laser Physics, 2013, 23(4): 045806.

    [4] Zhu Haiyong, Zhang Ge, Duan Yanmin, et al. Compact continuous-wave Nd:YVO4 laser with self-Raman conversion and sum frequency generation[J]. Chinese Physics Letters, 2010, 28(5): 054202.

    [5] Du Chenlin, Guo Yayin, Yu Yongqin, et al. High power Q-switched intracavity sum-frequency generation and self-Raman laser at 559nm[J]. Optics & Laser Technology, 2013, 47: 43-46.

    [6] Su Fufang, Zhang Xingyu, Wang Weitao, et al. Diode-pumped intracavity yellow-green Raman laser at 560 nm with sum-frequency-generation[J]. Optics & Laser Technology, 2014, 6(6): 122-124.

    [7] Fu Xihong, Tan Huiming, Li Yiming, et al. All-solid-state single-longitudinal-mode 593.5 nm sum-frequency laser[J]. Optics and Precision Engineering, 2007, 15(10): 1469-1473. (in Chinese)

    [8] Li Yongliang, Jiang Huilin, Xing Yu, et al. Doubly resonant intra-cavity sum-frequency yellow-green laser at 554.8 nm [J]. Infrared and Laser Engineering, 2009, 38(5): 869-872. (in Chinese)

    [9] Jiang Zhongming, Chen Dianren. All-solid-state continuous-wave doubly resonant all intracavity sum-frequency yellow laser at 570 nm[J]. Optics and Precision Engineering, 2010, 18(4): 805-808. (in Chinese)

    [10] Li Yongliang, Jiang Huilin, Xing Yu, et al. LD-pumped sum-frequency in 593 nm yellow laser[J]. Infrared and Laser Engineering, 2012, 41(8): 2038-2041. (in Chinese)

    [11] Zhang Xingyu, Zhao Shengzhi, Wang Qingpu, et al. Optimization of Cr4+-doped saturable-absorber Q-switched lasers[J]. IEEE Journal of Quantum Electronics, 1997, 33(12): 2286-2294.

    [12] Ding Shuanghong, Zhang Xingyu, Wang Qingpu, et al. Numerical modelling of passively Q-switched intracavity Raman lasers[J]. Journal of Physics D: Applied Physics, 2007, 40(9): 2736.

    [13] Liu Yongna. Theoretical and experimental study on LD pumped passively Q-switched intracavity frequency-doubled Raman yellow laser[D]. Yantai: Yantai University, 2012. (in Chinese)

    [14] Degnan J J. Theory of the optimally coupled Q-switched laser[J]. Quantum Electronics, IEEE Journal of, 1989, 25(2): 214-220.

    Huangfu Junqiang, Jia Haixu, Yang Lili, Ding Shuanghong. Rate equation theory of LD pumped passively Q-switched intracavity sum-frequency Raman laser[J]. Infrared and Laser Engineering, 2016, 45(6): 606006
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