• Infrared and Laser Engineering
  • Vol. 44, Issue 3, 867 (2015)
Zhou Jingtao1、*, Huang Jingxia2, and Li Li2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: Cite this Article
    Zhou Jingtao, Huang Jingxia, Li Li. Nd:GGG laser at 1 110 nm and frequency-doubled laser at 555 nm[J]. Infrared and Laser Engineering, 2015, 44(3): 867 Copy Citation Text show less
    References

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    [2] Li C Y, Bo Y, Yang F, et al. A kilowatt level diode-side-pumped QCW Nd: YAG ceramic laser[J]. Optics Communications, 2010, 283(24): 5145-5148. (in Chinese)

    [3] Lv Yanfei, Zhang Xihe, Tan Huiming. 555 nm all solid-state continaous-wave yellow-green laser[J]. Optics Precision Engineering, 2007, 15(5): 0674-0678. (in Chinese)

    [4] Wu Y, Zhang X H, Sun G C. All-solid-state doubly resonant sum-frequency mixing laser at 555 nm[J]. Laser Physics, 2011, 21(6): 1074-1077.

    [5] Mildren R P, Convery M, Pask H M, et al. Efficient, all-solid-state, raman laser in the yellow, orange and red[J]. Macquarie University Research, 2004,12(5): 785-790.

    [6] Wang Zhichao, Peng Qinjun,Bo Yong, et al. 60 W yellow laser at 561 nm by intracavity frequency doubling of a diode-pumped Q-switched Nd: YAG laser[J]. Optics Communications, 2012, 285(3): 328-330. (in Chinese)

    [7] Li Y L, Li J H, Liu X H, et al. 555 nm laser sources based on intracavity frequency doubling of Nd: YGG laser[J]. Solid State and Liquid Lasers, 2012, 22(3): 527-530.

    [8] Dong Yue, Zu Jifeng, Hou Liqun, et al. Approximate formulas of temperature and stress distributions and thermal induced effects in a heat capacity slab laser[J]. Chinese Optics Letters, 2006, 4(6): 326-328. (in Chinese)

    [9] Zuo C H, Zhang B T, He J L, et al. The acousto-optical Q-switched Nd: GGG laser[J]. Laser Physics Letters, 2008, 5(10): 719-721.

    [10] Zuo Chunhua, He Jingliang,Huang Haitao, et al. Efficient passively Q-switched operation of a diode-pumped Nd: GGG laser with a Cr4+: YAG saturable absorber[J]. Optics & Laser Technology, 2009, 41(1): 17-20. (in Chinese)

    [11] Li Z Y, Huang H T, He J L, et al. High peak power eye-safe intracavity optical parametric oscillator pumped by a diode-pumped passively Q-switched ND: GGG laser[J]. Laser Physics , 2010, 20(6): 1302-1306.

    [12] Zuo C H, Zhang B T, He J L, et al. CW and passively Q-switching characteristics of a diode-end-pumped Nd: GGG laser at 1 331 nm[J]. Optical Materials, 2009, 31(6): 976-979.

    [13] Zuo C H, Zhang B T, Liu Y B, et al. Diode-pumped passively Q-switched and mode-locked Nd: GGG laser at 1.3 μm with V3+: YAG saturable absorber[J]. Laser Physics, 2010, 20(8): 1717-1720.

    [14] He Kunna, Gao Chunqing, Wei Zhiyi, et al. Diode-pumped quasi-three-level passively Q-switched Nd: GGG laser with a codoped Nd, Cr: YAG saturable absorber [J]. Chinese Phys Lett, 2009, 26(9): 137-139. (in Chinese)

    [15] Huang Haitao, He Jingliang, Zhang Baitao, et al. V3+: YAG as the saturable absorber for a diode-pumped quasi-three-level dual-wavelength Nd: GGG laser[J]. Optics Express, 2010, 18(4): 3352-3357. (in Chinese)

    [16] Zhang X L, Zhang X Y, Wang Q P, et al. LD side-pumped Nd: GGG CW laser operating at 1110 and 1105 nm dual wavelengths and 1 110 nm single wavelength[J]. Laser Physics, 2011, 21(6): 1047-1050.

    [17] Zhang S S, Wang Q P, Zhang X Y, et al. High power and highly efficient Nd: YAG laser emitting at 1 123 nm[J], Laser Physics, 2009, 19(12): 2159-2162.

    [18] Li C Y, Bo Y, Xu Y T, et al. 219.3 W CW diode-side-pumped 1 123 nm Nd: YAG laser[J]. Optics Communications, 2010, 283: 2885-2887. (in Chinese)

    [19] Wang Zhichao, Peng Qinjun, Bo Yong, et al. Yellow-green 52.3 W laser at 556nm based on frequency doubling of a diode side-pumped Q-switched Nd: YAG laser[J]. Applied Optics, 2010, 49(18): 3465-3469.

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    Zhou Jingtao, Huang Jingxia, Li Li. Nd:GGG laser at 1 110 nm and frequency-doubled laser at 555 nm[J]. Infrared and Laser Engineering, 2015, 44(3): 867
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