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Volume 29 Issue 1
Sep.  2013
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Wavelength stabilization scheme for tunable laser diode based on temperature feedback

  • Received Date: 2004-02-03
    Accepted Date: 2004-03-25
  • A general discussion on tunable semiconductor lasers for high speed optical communication is presented,with emphasis on SSG-DBR lasers.Then a novel temperature feedback control scheme for frequency stabilization is described. Using bias current control,absolute wavelength stabilization within 1nm has been achieved with SMSR better than 35dB in the temperature range of 20℃~70℃.This simple,effective stabilization method will play an important role in obtaining highly reliable light sources for optical network.
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    AMANN M C, BUUS J. Tunable laser diodes [M]. Norwood, M A: Artech House, 1998.53~68.
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    SAITO S, YAMAMOTO Y. Direct observation of lorentzian linewidth shape of semiconductor laser and linewidth reduction with external grating feedback [J]. Electron Lett,1981,17(3):325~327.
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    OHTSU M,TABUCHI N. Electrical feedback and its network analysis for linewidth reduction of a semiconductor laser [J]. IEEE J Lightwave Technol, 1988,6(3):357~369.
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    SARLET G, MORTIER G, BAETS R. Control of widely tunable SSGDBR lasers for dense wavelength division multiplexing [J]. IEEE J Lightwave Technol,2000,18(8):1128~1138.
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    WOODWARD S L, MIZRAHI V, KOCH T L et al. Wavelength stabilization of a DBR laser using an in-fiber Bragg filter [J]. IEEE Photon Technol Lett, 1993,5 (6): 628~630.
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    ISHII H, KANO F,YOSHIKUNI Y et al. Mode stabilization method for superstructure-grating DBR lasers [J]. IEEE J Lightwave Technol,1998,16(3):433~442.
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    WOODWARD S L, KOCH T L, KOREN U. A control loop which ensures high side-mode-suppression ratio in a tunable DBR laser [J].IEEE Photon Technol Lett,1992,4(5):417~419.
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    WINNALL S T, LINDSAY A C. DFB semiconductor diode laser frequency stabilization employing electronic feedback and Bragg grating Fabry-Perot interferometer [J]. IEEE Photonics Technol Lett, 1999,11(11):1357~1359.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Wavelength stabilization scheme for tunable laser diode based on temperature feedback

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Abstract: A general discussion on tunable semiconductor lasers for high speed optical communication is presented,with emphasis on SSG-DBR lasers.Then a novel temperature feedback control scheme for frequency stabilization is described. Using bias current control,absolute wavelength stabilization within 1nm has been achieved with SMSR better than 35dB in the temperature range of 20℃~70℃.This simple,effective stabilization method will play an important role in obtaining highly reliable light sources for optical network.

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