Page 248 - Fiber Bragg Gratings
P. 248

References                                                       225

        21 Cole M. J., Loh W. H., Laming R. I., Zervas M. N., and Barcelos S., "Moving
           fibre/phase mask-scanning beam technique for writing arbitrary profile fibre
           gratings with a uniform phase mask," in Photosensitivity and Quadratic Non-
           linearity in Glass Waveguides: Fundamentals and Applications, Vol. 22, 1995
           OSA Technical Series (Optical Society of America, Washington DC, 1995), pp.
           PDl-(l-S) (1995).
        22 Ibsen M., Durkin Michael K., and Lamming R. I., "Chirped Moire gratings
           operating on two-wavelength channels for use as dual-channel dispersion com-
           pensators," IEEE Photon. Technol. Lett. 10(1), 84-86 (1998).
        23 Campbell R. J. and Kashyap R., "Spectral profile and multiplexing of Bragg
           gratings in photosensitive fibre," Opt. Lett. 16(12), 898-900 (1991).
        24 Byron K. C., Sugden K., Bircheno T., and Bennion I., "Fabrication of chirped
           Bragg gratings in photosensitive fibre," Electron. Lett. 29(18), 1659 (1993).
        25 Kashyap R., Swanton A., and Armes D. J., "A simple technique for apodising
           chirped and unchirped fibre Bragg gratings," Electron. Lett. 32(14), 1226-1228
           (1996).
        26 Kashyap R., Froehlich H.-G., Swanton A., and Armes D. J., "1.3 m long super-
           step chirped fibre Bragg grating with a continuous delay of 13.5 ns and band-
           width 10 nm for broadband dispersion compensation," Electron. Lett. 32(19),
           1807-1809 (1996).
        27 Niay P., Bernage P., Douay M., Taunay T., Xie W. X., Martinelli G., Bayon
           J. F., Poignant H., and Delevaque E., "Bragg grating photoinscription within
           various types of fibers and glasses," in. Photosensitivity and Quadratic Nonline-
           arity in Glass Waveguides: Fundamentals and Applications, Vol. 22,1995 OSA
           Technical Series (Optical Society of America, Washington, DC, 1995), paper
           SUA1, pp. 66-69 (1995).
        28 Douay M., Xie W. X., Taunay T, Bernage P., Niay P., Cordier P., Poumellec B.,
           Dong L., Bayon J. E, Poignant H., and Delevaque E., "Densification involved
           in the UV-based photosensitivity of silica glasses and optical fibers," IEEE J.
           Lightwave. Technol. 15(8), 1329-1342 (1997).
        29 Grubsky V, Starburodov D. S. and Feinberg J., "Wide range and linearity
           near-UV induced index change in hydrogen-loaded fibers: Applications for
           Bragg grating fabrication," in Bragg Gratings, Photosensitivity, and Poling in
           Glass Fibers and Waveguides: Applications and Fundamentals, Vol. 17, OSA
           Technical Digest Series (Optical Society of America, Washington, DC, 1997),
           Paper BME3, pp. 156-158.
        30 Malo B., Albert J., Hill K. O., Bilodeau E, and Johnson D. C., "Effective index
           drift from molecular hydrogen diffusion in hydrogen-loaded optical fibres and
           its effect on Bragg grating fabrication," Electron. Lett 30(5), 442-444 (1994).
   243   244   245   246   247   248   249   250   251   252   253