• Chinese Journal of Quantum Electronics
  • Vol. 17, Issue 4, 345 (2000)
[in Chinese] and [in Chinese]
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  • [in Chinese]
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    DOI: Cite this Article
    [in Chinese], [in Chinese]. Theoretical Analysis of Erbium-doped Superfluorescent Fiber Source in Double-pass Backward Configuration[J]. Chinese Journal of Quantum Electronics, 2000, 17(4): 345 Copy Citation Text show less
    References

    [1] Wysocki P F, Digonnet M J F, Kim B Y. Spectral characteristics of high-power 1.55 μm broad-band superluminescent fiber sources. IEEE Photon. Technol. Lett., 1990, 2(3): 178~180

    [2] Hall D C, Burns W K, Moeller R P. High stability Er-doped superfluorescent fiber sources. J.Lightwave Technol., 1995, 13(7): 1452~1460

    [3] Wysocki P F, Kalman R F, Digonnet M J F et al. A comparison of 1.48 μm and 980 nm pumping for Er-doped superfluorescent fiber sources. Proc. SPIE 1571, Fiber Laser Sources and Amplifiers Ⅲ, 1991, 1581-04

    [4] Wysocki P F, Digonnet M J F, Kim B Y et al. Characteristics of erbium-doped superfluorescent fiber sources for intefferometric sensor applications. J. Lightwave Technol., 1994, 12(3): 550~567

    [5] Wang L A, Chen C D. Stable and broadband Er-doped superfluorescent fiber sources utilizing double-pass backward configuration. Electron. Lett., 1996, 132(19): 1815~1817

    [6] Wang L A, Chen C D. Characteristics comparison of Er-doped double-pass superfluorescent fiber sources pumped near 980 nm. Photon. Technol. Lett., 1997, 19(4): 446~448

    [7] Desurvire E. Erbium-doped Fiber Amplifiers. New York: John Wiley, 1994.

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    [1] Chang Cun, Yang Jiuru, Ye Hongan. Research by Simulation on the Output Power Characteristic of Superfluorescent Source Based Giles Model[J]. Chinese Journal of Lasers, 2008, 35(s2): 1

    [in Chinese], [in Chinese]. Theoretical Analysis of Erbium-doped Superfluorescent Fiber Source in Double-pass Backward Configuration[J]. Chinese Journal of Quantum Electronics, 2000, 17(4): 345
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