Page 480 - Tunable Lasers Handbook
P. 480

440      Paul Zorabedian

                  109.  E Favre and D. Le Gum, “82 nm  of  Continuous Tunability for an External  Cavity  Semicon-
                      ductor Laser,“ Electron. Len. 27,  183-183  (1991).
                  110. P.  McNicholl and H. J. Metcalf.  “Synchronous Cavity hlode and Feedback Wavelength Scan-
                      ning in Dye Laser Oscillators with Gratings,”.Appl. Opf. 21, 2757-2761  (1985).
                  11 1. M.  de  Labachelerie  and  G.  Passedat.  “Mode-Hop  Suppression  of  Littrow  Grating-Tuned
                      Lasers:’.4ppl.  Opt. 32, 269-271  (1993).
                  112.  W. K. Trutna. Jr. and L. E Stokes. “Continuously Tuned External Cavity Semiconductor Laser.”
                      IEEE J. Lighmave Technol. 11, 1279-1286  (1993).
                  1 13.  H.  Lotem, “Mode-Hop Suppression  of Littrow  Grating-Tuned  Lasers:  Comment,” Appl. Opt.
                      33, l(1994).
                  111. W. R. Trutna. Jr. and P.  Zorabedian. “Optical Oscillator Sweeper,” US. Patent Nos. 5. 130, 599
                      (Aug.  18. 1992) and 5,263,037 (Nov. 16, 1993).
                  115.  L. E Stokes, “.Accurate Measurement of Reflectivity over Wavelength of a Laser Diode Antire-
                      flection Coating Using an External Cavity Laser,” IEEE J. Lightware Technol. 11, 1162-1  167
                      (1993).
                   116.  K. Kikuchi and T. Okoshi. ”High Resolution Measurement of the Spectrum of Semiconductor
                      Lasers,” JARECT Series. Oprical Derices and Fibers, pp. 51-59,  Ohm Publishing Co., Tokyo
                      (1982).
                   117. H. Higuchi, H. Namizaki, E.  Oomura.  K.  Hirano. Y. Sakibara. W. Susaski. and K. Fukijawa.
                      “Internal Loss of InGaAsPfinP Buried Crescent (1.3 pm) Laser,” Appl. PhTs. Letr. 41, 320-321
                      (1982).
                   118.  K. Wyatt and W. K. Devlin. “lOkHz Linewidth 1.5 pm InGaAsP External Cavity Laser with 55
                      nm Tuning Range.” Elecfron. Left. 19, 110-1 12 (1983).
                   119.  I. P. Kaminow. G. Eisenstein.  and L. W.  Stulz. “Measurement of the Modal Reflectivity of an
                      Antireflection  Coating  on  a  Superluminescent Diode.”  ZEEE  J.  Qzranrtini  Electron. QE-19,
                      393495 (Apr. 1983).
                   120.  M. Ohtsu. K.-Y. Liou. E. C. Burrows, C. A. Burrus, and G. Eisenstein. “A Simple Interferomet-
                      ric Method for Monitoring hsfode-Hopping in Tunable External-Cavity Semiconductor Lasers,”
                      IEEE J. Qiiantiini Electron. 7, 68-75  (1989).
                   121. M. Notomi, 0. Mitomi. Y. Yoshikuni. E Kano.  and Y.  Tohmori, “Broad-Band  Tunable Two-
                      Section Laser Diode with External Grating Feedback,” ZEEE Photon. Techizol. Len. 2, 85-87
                      (1990).
                   122.  P.  A. Andrekson.  “Electrical  Mode-Hopping Noise  in  External-Cavity  Semiconductor Lasers
                      and Mode-Hopping Elimination by  a Nonoptical  Control  Loop.”  ZEEE J. Qrrannini Electron.
                      QE-23,2078-2083  (1987).
                   123. H. Lotem, Z. Pan. and hl. Dagenais. “Tunable Dual-Wavelength Continuous-Wave Diode Laser
                      Operated at 830 nm.”Appl. Opr. 32,5270-5273 (1993).
                   124.  C.-L. Wang  and C.-L.  Pan.  “Tunable  Dual-Wavelength  Operation of  a Diode Array  with an
                      External Grating-Loaded Ca\Tity.” Appl. Phgs. Lett. 64, 3089-3091  (1994).
                   125. I. H.  White.  “A  Multichannel Grating  Cavity  Laser  for  Wavelength  Division  Multiplexing
                      Applications,” IEEE J. Lighhvare Technol. 9, 893-899  (199 1).
                   126.  I. H. White and K. 0. Nyairo, ”Demonstration of  a 1 x 2 Multichannel Grating Cavity Laser for
                      Wavelength Division Multiplexing (WDM) Applications,” Electron. Lett. 26,832-833  (1990).
                   127. G. M. Foster,  R.  Cush.  T. J.  Reid, and A. C.  Carter,  ”Four  Channel Multiwavelength  Source
                      with Individually Addressable Elements.” Elecrron. Leu. 29, 930-93 1 (1993).
                   128. J. B. D.  Soole. K.  Poguntke.  A. Scherer.  H. P.  LeBlanc.  C.  Chang-Hasnain.  J. R.  Hayes, C.
                      Caneau, R.  Bhat.  and  M. A.  Koza.  “Multistripe Array  Grating Integrated  Cavity  (MAGIC)
                      Laser:  A  New  Semiconductor Laser for WDhl Applications,.’ Elecrron. Let?. 28,  1805-1806
                      (1992).
                   129. K. K.  Poguntke.  J. B. D.  Soole, A.  Scherer,  H. P.  LeBlanc.  C.  Caneau.  R.  Bhat,  and  M. 4.
                      Koza. “Simultaneous Multiple Wavelength Operation of a Multistripe Array Grating Integrated
                      Cavity Laser,” Appl. Phy. Lett. 62,2024-2026  (1993).
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