Page 422 - Fiber Bragg Gratings
P. 422

References                                                       399

            laser with an external waveguide Bragg reflector," IEEE J. Quantum Elec-
            tron. QE-43, 143-147 (1988).
          6 Meltz G. and Morey W. W., "Bragg grating formation and germanosilicate
            fiber photosensitivity," SPIE1516, International Workshop on Photo-induced
            Self-Organisation effects in Optical Fibres," p. 185 (1991).
          7 ITU-T specification of wavelength for WDM.
          8 Adams M. J., Steventon A. J., Devlin W, and Henning I., Semiconductor
            Lasers for Long Wavelength Optical Fibre Communication Systems, Peter
            Peregrinus (1987).
          9 Osinski M. and Buus J., "Linewidth broadening factor in semiconductor
            lasers — an overview," IEEE J. Quantum. Electron. QE-23(1), 9-21 (1987).
         10 Olsson N. A., Henry C. H., Kazarinov R. R, Lee H. J., and Johnson B. H.,
            "Relation between chirp and linewidth reduction in external Bragg reflector
            semiconductor laser," Appl. Phys. Lett. 47, 183-185 (1985).
         11 Timofeev F. N., Bayvel P., Reekie L., Tucknott J., Midwinter J. F., and Payne
            D. N., "Spectral characteristics of a reduced cavity single mode semiconductor
            fiber grating cavity for applications in dense systems," in Proc. of 21st Euro-
            pean Conf. Optic. Commun., ECOC'95, Brussels, Belgium, paper TuP. 26, pp.
            477-480 (1995).
         12 Brinkmeyer E., Brennecke W, Ziirn M., and Ulrich R., "Fiber Bragg reflector
            for mode selection and line-narrowing of injection lasers," Electron. Lett.
            22(3), 134-135 (1986).
         13 Park C. A., Rowe C. J., Buus J., Reid D. C. J., Carter A., and Bennion I.,
            "Single-mode behaviour of a multimode 1.55 /mi laser with a fiber grating
            external cavity," Electron. Lett. 22, 1132-1134 (1986).
         14 Morey W. W, Meltz G., and Glenn W. H., "Fiber optic Bragg grating sensors,"
            SPIE 1169, Fiber optics Sensors VII, pp. 98-107 (1989).
         15 Bird D. M., Armitage J. R., Kashyap R., Fatah R. M. A., and Cameron K. H.,
            "Narrow line semiconductor laser using fiber grating," Electron. Lett. 27,
            1115 (1991).
         16 Williams D. L., Ainslie B. J., Kashyap R., Sherlock G., Smith R. P., and Collins
            J. V., "Temperature stable 1.3 /urn laser with Bragg fiber grating external
            cavity for access networks," in Proc ofECOC'93, pp. 209-212 (1993).
         17 Morton P. A., Mizrahi V., Lemaire P. J., Tanbun-Ek, Logan R. A., Presby
            H. M., Erdogan T, Woodward S. L., Phillips M. R., Sargent A. M., and Wecht
            K. W, "High power narrow-line width stable single-mode hybrid," in Proc.
            Conference on Optical Fiber Communications, OFC'94 Technical Digest,
            Paper WG4, p. 102 (1994).
   417   418   419   420   421   422   423   424   425   426   427