• Chinese Journal of Quantum Electronics
  • Vol. 22, Issue 4, 497 (2005)
[in Chinese]*
Author Affiliations
  • [in Chinese]
  • show less
    DOI: Cite this Article
    [in Chinese]. The heat managements of the solid-state lasers[J]. Chinese Journal of Quantum Electronics, 2005, 22(4): 497 Copy Citation Text show less
    References

    [1] Krupke W F, et al. Advanced diode pumped solid state lasers: near term trends and future prospects [C] ∥SPIE, 2000, 3889: 21-31.

    [2] Hirano Y, Koyata Y, Yamamoto S, et al. 208 W TEM00 operation of a diode-pumped Nd:YAG rod laser [J]. Opt.Lett., 1999, 24: 679-681.

    [3] Beach R J, Honea E C, Sutton S B, et al. High-average-power diode-pumped Yb:YAG lasers [C] ∥ SPIE, 2000,3889: 246-260.

    [4] Ripin D J, Ochoa J R, Aggarwal R L, et al. 165 W cryogenically cooled Yb:YAG laser [J]. Opt. Lett., 2004, 29:2154-2156.

    [5] Clarkson W A, Felgate N S, Hanna D S. Simple method for reducing the depolarization loss resulting from thermally induced birefringence in solid-state lasers [J]. Opt. Lett., 1999, 24: 820-822.

    [6] Bowman S R. Lasers without internal heat generation [J]. IEEE. JQE., 1999, 35: 115-122.

    [7] Basu S, Sridharan A. Disk motion - a new control element in high-brightness solid state laser design [J]. Opt.Lett., 2004, 12: 3114-3124.

    [8] Vetrovec J. Ultrahigh-average power solid-state laser [C] ∥ SPIE., 2002, 4760: 491-504.

    [9] Vetrovec J. Solid-state laser high-energy laser [C] ∥ SPIE., 2002, 4632: 104-114.

    [10] Albrecht G F, Sutton S B, George E V, et al. The heat capacity disk laser [C] ∥ SPIE., 1998, 3343: 661-666.

    [11] Albrecht G, George E V, Krupke W F, et al. High energy bursts from a solid state laser operated in the heat capacity limited regime [P]. US Patent, 1996, 50, 526, 372.

    [12] Shiner B, Thieme J. IPG photonics achieves record two kilowatt single mode output from fiber laser [OL].http:∥www.ipgphotonics.com/. March 1, 2005.

    [13] Lavi R, Jackel S, Tal A, et al. 885 nm high-power diode end-pumped Nd:YAG laser [J]. Opt. Commun., 2001,195: 427-430.

    [14] Lavi R, Jackel S, Tzuk Y, et al. Efficient pumping scheme for neodymium-doped materials by direct excitation of the upper lasing level [J]. Appl. Opt., 1999, 38: 7382-7395.

    [15] Stewen C, Contag K, Larionov M, et al. A 1 kW CW thin disc laser [J]. IEEE JQE., 2000, 6: 650-657.

    [16] Volodin B L, Dolgy S V, Melnik E D, et al. Wavelength stabilization and spectrum narrowing of high-power multimode laser diodesand arrays by use of volume Bragg gratings [J]. Opt. Lett., 2004, 29: 1891-1893.

    CLP Journals

    [1] Zhou Shouhuan, Zhao Hong, Tang Xiaojun. High Average Power Laser Diode Pumped Solid-State Laser[J]. Chinese Journal of Lasers, 2009, 36(7): 1605

    [2] Cao Shaowen, Shi Huicai, Zhang Rongzhu, Sun Nianchun. Effects of the time domain control precision on multiple-pulse superposition[J]. Infrared and Laser Engineering, 2017, 46(3): 306004

    [3] Li Mi, Li Chunling, Wang Yali, Xu Zheng. Lasing Characteristic Research of Nd3+-Doped Inorganic Liquid System under Flowing Status[J]. Chinese Journal of Lasers, 2010, 37(S1): 57

    [4] Xu Zheng, Li Mi, Li Chunling, Wang Yali. Lasing Experiment Research on Inorganic Liquid Laser Pumped with Laser Diode at Flowing State[J]. Acta Optica Sinica, 2010, 30(9): 2620

    [5] Ding Xin, Zhang Haiyong, Sheng Quan, Li Bin, Shang Ce, Fan Chen, Yu Xuanyi, Wen Wuqi, Yao Jianquan. High Efficiency Nd:YVO4 Laser In-Band Pumped from High Stark Level of Ground State at 914 nm[J]. Chinese Journal of Lasers, 2013, 40(7): 702008

    [6] Liu Gang, Tang Xiaojun, Xu Liujing, Wang Chao, Liu Lei, Wang Wentao, Liu Yang. Fluid-Solid Coupled Heat Transfer Design Numerical Study for Water Cooling CCEPS Laser[J]. Chinese Journal of Lasers, 2014, 41(4): 402004

    [in Chinese]. The heat managements of the solid-state lasers[J]. Chinese Journal of Quantum Electronics, 2005, 22(4): 497
    Download Citation