Chinese Journal of Lasers, Volume. 28, Issue 2, 116(2001)

Study of Yb3+-doped Ring and Line Cavity Fiber Laser

[in Chinese], [in Chinese], [in Chinese], and [in Chinese]
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    References(8)

    [1] [1] M. Saruwatari, T. Sugie. Efficient laser-diode-single-mode-fiber ,coupling using two confocal lenses. Electron. Lett., 1980, 16(25):955~956

    [2] [2] M. Sumida, K. Takemoto. Lens coupling of laser diodes to single-mode fibers. J. Lightwave Technol., 1984, LT-2:305~311

    [3] [3] Xuelu Zou, Hisayoshi Toratani. Evaluation of spectroscopic properties of Yb3+-doped glasses. Phys. Rev. B, 1995, 52:889~896

    [4] [4] J. Y. Allain, M. Monerie, H. Poignant. Ytterbium-doped fluoride fiber laser operating at 1.02 μm. Electron. Lett., 1992, 28(11):988~989

    [5] [5] J. R. Armitage, R. Wyatt, B. J. Ainslie et al.. Highly efficient 980 nm operation of an Yb3+-doped silica fiber laser. Electron. Lett., 1989, 25(5):298~299

    [6] [6] D. C. Hanna, R. M. Percival, I. R. Perry et al.. An ytterbium-doped monomode fiber laser: broadly tunable operation from 1.010 μm to 1.162 μm and three-level operation at 974 nm. J. Modern Optics, 1990, 37(4):517~525

    [7] [7] Rudiger Paschotta, Johan Nilsson, Anne C. Tropper et al.. Ytterbium-doped fiber amplifiers. IEEE J. Quantum Electron., 1997, 33(7):1049~1056

    [8] [8] D. C. Hanna, I. R. Perry, R. G. Smart et al.. Efficient superfluorescent emission at 974 nm and 1040 nm from an Yb-doped fiber. Opt. Comm., 1989, 72(3,4):230~234

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    [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Study of Yb3+-doped Ring and Line Cavity Fiber Laser[J]. Chinese Journal of Lasers, 2001, 28(2): 116

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    Paper Information

    Category: Laser physics

    Received: Jul. 26, 1999

    Accepted: --

    Published Online: Aug. 10, 2006

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