• Laser & Optoelectronics Progress
  • Vol. 49, Issue 4, 40003 (2012)
Xin Yun1、*, Ye Bing1, and Fang Wanli2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.3788/lop49.040003 Cite this Article Set citation alerts
    Xin Yun, Ye Bing, Fang Wanli. Application and Development of Holmium Laser[J]. Laser & Optoelectronics Progress, 2012, 49(4): 40003 Copy Citation Text show less
    References

    [1] L. F. Johnson, J. E. Geusic, L. G. Van Uitert. Coherent oscillations from Tm3+, Ho3+, Yb3+ and Er3+ ions in yttrium aluminum garnet[J]. Appl. Phys. Lett., 1965, 7(5): 127~129

    [2] L. F. Johnson. Efficient, high-power coherent emission from Ho3+ ions in yttrium aluminum garnet, assisted by energy transfer[J]. Appl. Phys. Lett., 1966, 8(8): 200~201

    [3] E. P. Chicklis, C. S. Naiman. Stimulated Emission at 0.85 μm in Er3+YLF[R]. Seventh Int. Quantum Electronics Conf., 1972

    [4] Marvin J. Weber, Michael Bass, Thomas E. Varitimos et al.. Laser action from Ho3+, Er3+ and Tm3+ in YAlO3[J]. IEEE J. Quantum Electron., 1973, QE-9(11): 1079~1086

    [5] Huang Xiude, Liu Xuefeng. Semiconductor Laser and Applications[M]. Beijing: National Defence Industry Press, 1999

    [6] Haim Lotem, Yehoshua Kalisky, Jacob Kagan et al.. A 2 μm holmium laser[J]. IEEE J. Quantum Electron., 1988, QE-24(6): 1193~1200

    [7] T. Y. Fan, G. Huber, R. L. Byer. Spectroscopy and diode laser-pumped operation of Tm, Ho:YAG[J]. IEEE J. Quantum Electron., 1998, 24(6): 924~933

    [8] P. Moulton. Holmium laser cuts into medical applications[J]. Laser Focus World, 1992, 28(3): 65

    [9] S. R. Bowman, B. J. Feldman. Demonstration and analysis of a holmium quasi-two level laser[C]. SPIE, 1992, 1627: 46~54

    [10] N. P. Barnes, W. J. Rodriguez, B. M. Walsh. Ho,TmYLF laser amplifiers[J]. J. Opt. Soc. Am. B, 1996, 13(12): 2872~2882

    [11] A. F. Kornev, A. A. Nikitichev, V. P. Pokrovskiy et al.. 8 ns HoYLF 3 micron laser[C]. Conference on Lasers and Electro-Optics Europe, 1998. 56~64

    [12] I. F. Elder, M. J. Payne. Comparision of diode-pumped TmYAP with TmYAG[C]. Advanced Solid State Lasers, OSA Trends in Optics and Photonics Series, 1998. 19 ML6

    [13] I. F. Elder, M. J. Payne. Lasing in diode-pumped TmYAP, TmHoYAP and TmHoYLF[J]. Opt. Commun., 1997, 145(1-6): 329~339

    [14] P. A. Budni, M. L. Lemons, J. R. Mosto et al.. High-power/high-brightness diode-pumped 1.9 μm thulium and resonantly pumped 2.1 μm holmium lasers[J]. IEEE J. Sel. Top. Quantum Electron., 2000, 6(4): 629~634

    [15] P. A. Budni, C. R. Ibach, S. D. Setzler et al.. 5 mJ Q-switched 2.09 μm holmium laser resonantly pumped by a diode-pumped 1.9 μm thulium laser[J]. Opt. Lett., 2003, 28(12): 1016~1018

    [16] C. Kieleck, A. Hirth. Investigations of a Q-switched Ho:YAG laser intracavity pumped by a diode-pumped TmYLF laser[C]. SPIE, 2004, 5460: 56~63

    [17] W. J. He, Baoquan Yao, Y. Ju et al.. Diode-pumped efficiency TmHOGdVO4 laser with near-diffraction limited beam quality[J]. Opt. Express, 2006, 14(24): 11653~11659

    [18] Baoquan Yao, L. J. Li, L. L. Zheng et al.. Diode-pumped continuous wave and Q-switched operation of a c-cut TmHoYAlO3 laser[J]. Opt. Express, 2008, 16(7): 5075~5081

    [19] L. Espen, N. Stephane, A. Gunnar et al.. High-power fiber-laser-pumped mid-infrared laser source[C]. SPIE, 2006, 6397: 639704

    [20] S. So, J. I. Mackenzie, D. P. Sheperd et al.. High-power slab-based TmYLF laser for in-band pumping of Ho:YAG[C]. SPIE, 2008, 6871: 68710R

    [21] Fang Zhou. Study of Monolithic Nonplanar Ring Laser Using Ho:YAG Crystal at 2 μm[D]. Harbin: Harbin Institute of Technology, 2007

    [22] Yang Xiaotao. Experimental Study on Resonantly Pumped HoYAP Laser at Room Temperature[D]. Harbin: Harbin Institute of Technology, 2009

    [23] P. A. Budni, C. A. Miller, M. L. Lemons et al.. High power/energy thulium pumped holmium lasers[J]. IEEE J. Sel. Top. Quantum Electron., 2000, 6(4): 609~610

    [24] S. Chandra, M. E. Wager, T. H. Allik. 8-12 micron OPO pumped by a 2.09 micron holmium laser[C]. CLEO, 2000, 496~497

    [25] Ke Liang. Investigation of 2 μm Single Longitudinal Mode Laser at Room Temperature[D]. Harbin: Harbin Institute of Technology, 2010

    [26] Edward Reed. Holmium-YAG lasers expand surgical scope[J]. IEEE Circuits and Devices Mag., 1993, 9(3): 43~48

    [27] D. E. Johson,D. M. Gromeens, R. E. Price. Use of the holmiumYAG laser in urology[J]. Laser Surg. Med., 1992, 12(4): 355~363

    [28] P. J. Gilling, C. B. Cass, A. R. Malcolm et al.. Combination holmium and NdYAG laser ablation of the prostate: initial clinical experience[J]. J. Endourol., 1995, 9(2): 151~153

    [29] P. J. Gilling, K. M. Kennett, M. R. Fraundorfer. Holmium laser enucleation of the prostate for glands larger than 100 g: all endourologic alternative to open prostatectomy[J]. J. Endourol., 2000, 14(6): 529~531

    [30] D. Bagley, M. Erhard. Use of holmium laser in the upper urinary tract[J]. Tech. Urol., 1995, 1(1): 25~30

    [31] Chen Huimin, Li Ping. The design of high power Cr, Tm, Ho:YAG laser using multi-route techniques[J]. Laser Journal, 2006, 27(5): 30~31

    CLP Journals

    [1] Li Hongshu, Zhao Ming, Xu Wenhai. Influence of Thulium Ion Concentration and Output Transmittance on Tm:YAP Laser Performance[J]. Laser & Optoelectronics Progress, 2013, 50(2): 21401

    Xin Yun, Ye Bing, Fang Wanli. Application and Development of Holmium Laser[J]. Laser & Optoelectronics Progress, 2012, 49(4): 40003
    Download Citation