• Laser & Optoelectronics Progress
  • Vol. 49, Issue 11, 110004 (2012)
Li Li1、2、3、*, Fan Zhongwei1、3, Yu Jin1, Niu Gang3, Teng Songhan1、2、3, and Tang Xiongxin1、2、3
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: 10.3788/lop49.110004 Cite this Article Set citation alerts
    Li Li, Fan Zhongwei, Yu Jin, Niu Gang, Teng Songhan, Tang Xiongxin. Research Progress of Yb:KGW Femtosecond Laser[J]. Laser & Optoelectronics Progress, 2012, 49(11): 110004 Copy Citation Text show less
    References

    [1] Bai Guang. The application of femtosecond laser[J]. Laser & Optoelectronics Progress, 2002, 39(3): 41~44

    [2] Hiromichi Niikura, F. Légaré, R. Hasbani et al.. Sub-laser-cycle electron pulses for probing molecular dynamics[J]. Nature, 2002, 417(6892): 917~922

    [3] He Fei, Cheng Ya. Femtosecond laser micromachining: frontier in laser precision micromachining[J]. Chinese J. Lasers, 2007, 34(5): 595~622

    [4] S. Juodkazis, S. Matsuo, H. Misawa et al.. Application of femtosecond laser pulses for microfabrication of transparent media[J]. Applied Surface Science, 2002, 197-198: 705~709

    [5] Wang Li, Qiu Jianrong. Applications of femtosecond laser in biology[J]. Laser & Optoelectronics Progress, 2010, 47(1): 011701

    [6] Di Jianke, Zhou Ming, Yang Haifeng et al.. Principles and applications of femtosecond laser in the cell nanosurgery[J]. Acta Laser Biology Sinica, 2008, 17(2): 270~277

    [7] R. L. Fork, B. I. Greene, C. V. Shank. Generation of optical pulses shorter than 0.1 ps by colliding pulse mode locking[J]. Appl. Phys. Lett., 1981, 38(9): 671~672

    [8] D. E. Spence, P. N. Kean, W. Sibbett. 60-fsec pulse generation from a self-mode-locked Tisapphire laser[J]. Opt. Lett., 1991, 16(1): 42~44

    [9] T. Y. Fan, R. L. Byer. Modeling and CW operation of a quasi-three-level 946 nm NdYAG laser[J]. IEEE J. Quant. Electron., 1987, QE-23: 605~612

    [10] S. V. Marchese, C. R. Baer, A. G. Engqvist et al.. Femtosecond thin disk laser oscillator with pulse energy beyond the 10-microjoule level[J]. Opt. Express, 2008, 16(9): 6397~6407

    [11] P. A. Burns, J. M. Dawes, P. Dekker et al.. Optimization of Er, Yb:YCOB for CW laser operation[J]. IEEE J. Quant. Electron., 2004, 40(11): 1575~1582

    [12] R. C. Stoneman, L. Esterowitz. Efficient, broadly tunable, laser-pumped TmYAG and TmYSGG CW lasers[J]. Opt. Lett., 1990, 15(9): 486~488

    [13] P. A. Budni, L. A. Pomeranz, M. L. Lemons et al.. Efficient mid-infrared laser using 1.9-μm-pumped HoYAG and ZnGeP2 optical parametric oscillators[J]. JOSA B,, 2000, 17(5): 723~728

    [14] M. C. Pujol, M. Rico, R. Solé et al.. Crystalline structure and optical spectroscopy of Er3+-doped KGd(WO4)2 single crystals[J]. Appl. Phys. B, 1999, 68(2): 187~197

    [15] F. D. Patel, E. C. Honea, J. Speth et al.. Laser demonstration of Yb3Al5O12(YbAG) and materials properties of highly doped Yb:YAG[J]. IEEE J. Quant. Electron., 2001, 37(1): 135~144

    [16] Lu Xinchao, Chai Lu, Zhang Weili et al.. New Yb3+-doped laser crystal to produce femtosecond laser[J]. Laser & Optoelectronics Progress, 2003, 40(3): 11~15

    [17] S. Uemura, K. Torizuka. Kerr-Lens mode-locked diode-pumped Yb:YAG laser with the transverse mode passively stabilized[J]. Appl. Phys. Express, 2008. 012007

    [18] A. Yoshida, A. Schmidt, V. Petrov et al.. Diode-pumped mode-locked Yb:YCOB laser generating 35 fs pulses[J]. Opt. Lett., 2011, 36(22): 4425~4427

    [19] A. Schmidt, S. Rivier, V. Petrov et al.. 65 fs Diode-pumped diffusion-bonded YbKY(WO4)2/KY(WO4)2 laser[J]. Electron. Lett., 2010, 46(9): 641~643

    [20] G. Paunescu, J. Hen, R. Sauerbrey. 100 fs Diode-pumped Yb:KGW mode-locked laser[J]. Appl. Phys. B, 2004, 79(5): 555~558

    [21] V. Petrov, X. Mateos, A.Schmidt et al.. Passive mode-locking of acentric Yb-doped borate crystals[J]. Laser Physics, 2010, 20(5): 1085~1090

    [22] F. Druon, F. Balembois, P. Georges et al.. Generation of 90-fs pulses from a mode-locked diode-pumped Yb3+Ca GdO(BO3)3 laser[J]. Opt. Lett., 2000, 25(6): 423~425

    [23] F. Druon, S. Chénais, P. Raybaut et al.. Diode-pumped Yb:Sr3Y(BO3)3 femtosecond laser[J]. Opt. Lett., 2002, 27(3): 197~199

    [24] S. Biswal, S. P. O′Connor, S. R. Bowman. Thermo-optical parameters measured in ytterbium-doped potassium gadolinium tungstate[J]. Appl. Opt., 2005, 44(15): 3093~3097

    [25] F. Brunner, G. J. Spühler, J. Aus der Au et al.. Diode-pumped femtosecond Yb:KGd(WO4)2 laser with 1.1-W average power[J]. Opt. Lett., 2000, 25(15): 1119~1121

    [26] A. Courjaud, N. Deguil, F. Salin. High-power diode pumped Yb:KGW ultrafast laser[C]. CLEO, 2002. 501~502

    [27] J. E. Hellstrom, S. Bjurshagen, V. Pasiskevicius et al.. Efficient Yb:KGW lasers end-pumped by high-power diode bars[J]. Appl. Phys. B, 2006, 83(2): 235~239

    [28] A. Major, V. Barzda. An extended cavity diode-pumped femtosecond Yb:KGW laser for applications in optical DNA sensor technology based on fluorescence lifetime measurements[J]. Opt. Express, 2006, 14(12): 5285~5294

    [29] A. Major, R. Cisek, Virginijus Barzda. Femtosecond Yb:KGd(WO4)2 laser oscillator pumped by a high power fiber-coupled diode laser module[J]. Opt. Express, 2006, 14(25): 12163~12168

    [30] G. R. Holtom. Mode-locked Yb:KGW laser longitudinally pumped by polarization-coupled diode bars[J]. Opt. Lett., 2006, 31(18): 2719~2721

    [31] J. A. Berger, M. J. Greco, W. A. Schroeder. High-power femtosecond thermal-lens-shaped Yb:KGW oscillator[J]. Opt. Express, 2008, 16(12): 8629~8640

    [32] F. Hoos, T. P. Meyrath, S. Li et al.. Femtosecond 5-W Yb:KGW slab laser oscillator pumped by a single broad-area diode and its application[J]. Appl. Phys. B, 2009, 96(1): 5~10

    [33] S. Pekarek, C. Fiebig, Max Christoph Stumpf et al.. Diode-pumped gigahertz femtosecond Yb:KGW laser with a peak power of 3.9 kW[J]. Opt. Express, 2010, 18(26): 16320~16326

    [34] Li Jinfeng, Liang Xiaoyan, He Jinping et al.. Stable efficient diode-pumped femtosecond Yb:KGW laser through optimization of energy density on SESAM[J]. Chin. Opt. Lett., 2011, 9(7): 071406

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    Li Li, Fan Zhongwei, Yu Jin, Niu Gang, Teng Songhan, Tang Xiongxin. Research Progress of Yb:KGW Femtosecond Laser[J]. Laser & Optoelectronics Progress, 2012, 49(11): 110004
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