• DocumentCode
    1381000
  • Title

    Compression and Reshaping of Gain-Switching Low-Quality Pulses Using a Highly Nonlinear Optical Loop Mirror

  • Author

    De Dios, Cristina ; Lamela, Horacio

  • Author_Institution
    Optoelectron. & Laser Technol. Group (GOTL), Univ. Carlos III, Leganes, Spain
  • Volume
    22
  • Issue
    6
  • fYear
    2010
  • fDate
    3/15/2010 12:00:00 AM
  • Firstpage
    377
  • Lastpage
    379
  • Abstract
    This work presents an experimental study on the improvement of pulsed diode laser gain-switched (GS) optical sources where simultaneous compression and reshaping of the low-quality pulses obtained with this technique are reported. These effects are achieved using a highly nonlinear optical loop mirror (HNOLM) directly coupled to the diode laser source without any previous pulse conditioning. The HNOLM is based on the use of a microstructured optical fiber and a highly nonlinear semiconductor optical amplifier. This system is compact and robust. The pulses have been characterized through the evaluation of their autocorrelation traces and a study using a temporal information via intensity algorithm. Results show that the loop improves the quality of complex GS pulses in several aspects: they are compressed, their symmetry is improved, and the width and height of the pedestals that commonly appear accompanying GS pulses are reduced. The system proposed offers overall benefits in terms of reduced system complexity.
  • Keywords
    mirrors; nonlinear optics; optical pulse compression; optical pulse shaping; semiconductor lasers; semiconductor optical amplifiers; autocorrelation traces; gain-switching low-quality pulses compression; gain-switching low-quality pulses reshaping; microstructured optical fiber; nonlinear optical loop mirror; nonlinear semiconductor optical amplifier; pulsed diode laser gain-switched optical sources; Diode laser; gain switching (GS); nonlinear optical devices; picoseconds phenomena; pulse compression; pulse shaping;
  • fLanguage
    English
  • Journal_Title
    Photonics Technology Letters, IEEE
  • Publisher
    ieee
  • ISSN
    1041-1135
  • Type

    jour

  • DOI
    10.1109/LPT.2010.2040076
  • Filename
    5378644