Acta Optica Sinica, Volume. 21, Issue 3, 296(2001)

Electrooptic Coefficient for the Silica Fiber after Thermal/Electric-Field Poling

[in Chinese], [in Chinese], and [in Chinese]
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    References(12)

    [1] [1] Myers R A, Mukherjee N, Brueck S R J. Large second-order nonlinearity in poled fused silica. Opt. Lett., 1991, 16(22):1732~1734

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    [3] [3] Fujiwara T, Wong D, Fleming S. Large electrooptic modulation in a thermally-poled germanosilicate fiber. IEEE Photon. Technol. Lett., 1995, 7(10):1177~1179

    [4] [4] Fujiwara T, Wang D, Zhao Y et al.. Electro-optic modulation in germanosilicate fiber with UV-exciting poling. Electron. Lett., 1995, 31(7):573~575

    [5] [5] Long X C, Brueck S R J. Large-signal phase retardation with a poled electrooptic fiber. IEEE. Photon. Technol. Lett., 1997, 9(6):767~769

    [6] [6] Pruneri V, Kazanky P G. Electric-field thermally poled optical fiber for quasi-phase-matched second-harmonic generation. IEEE Photon. Technol. Lett., 1997, 9(2):185~187

    [7] [7] Fujuwara T, Takahashi M, Ikushima A J. Decay behavior of second-order nonlinearity in GeO2-SiO2 glass poled with UV-irradiation. Electron. Lett., 1997, 33(11):980~982

    [8] [8] Alley T G, Brueck S R J. Visualization of the nonlinear optical space-charge region of bulk thermally poled fused-silica glass. Opt. Lett., 1998, 23(15):1170~1172

    [9] [9] Alley T G, Brueck S R J, Myers R A. Space charge dynamics in thermally poled fused silica. J. Non-Crystal Solids, 1998, 242(2/3):165~181

    [10] [10] Mizrahi V, Hibino Y, Stegeman G. Polarization study of photoinduced second-harmonic generation in glass optical fibers. Opt. Commun., 1990, 78(3/4):283~288

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    [in Chinese], [in Chinese], [in Chinese]. Electrooptic Coefficient for the Silica Fiber after Thermal/Electric-Field Poling[J]. Acta Optica Sinica, 2001, 21(3): 296

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    Paper Information

    Category: Fiber Optics and Optical Communications

    Received: Sep. 6, 1999

    Accepted: --

    Published Online: Aug. 10, 2006

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