• DocumentCode
    1208289
  • Title

    Design and characterization of dispersion compensating fiber based on the LP01 mode

  • Author

    Antos, A. Joseph ; Smith, David K.

  • Author_Institution
    Corning Inc., NY, USA
  • Volume
    12
  • Issue
    10
  • fYear
    1994
  • fDate
    10/1/1994 12:00:00 AM
  • Firstpage
    1739
  • Lastpage
    1745
  • Abstract
    The practical implementation of erbium-doped fiber amplifiers with gain at 1.55 μm allows long unrepeatered transmission distances. However, in order to realize high data rates over these distances with already installed standard single mode fiber, techniques must be found to overcome the pulse spreading due to the positive chromatic dispersion of the transmission fiber in this window, we review a compensation technique based on propagating the signals through a specially designed fiber with large negative dispersion for the LP01 mode, thereby ending up with zero net pulse spreading. The basis of the concept are discussed and a key figure of merit for dispersion compensating devices is defined. The design and optimization of dispersion compensating (DC) fiber is described with special attention to practical concerns including packaging and manufacturability. We describe experimental fabrication results of DC fiber, results of using the fiber to make compact dispersion compensating modules, and the outcome of recent systems experiments incorporating the fiber
  • Keywords
    erbium; fibre lasers; laser modes; optical dispersion; optical fibres; optical links; packaging; 1.55 mum; LP01 mode; compact dispersion compensating modules; compensation technique; dispersion compensating devices; dispersion compensating fiber; erbium-doped fiber amplifiers; high data rates; key figure of merit; large negative dispersion; long unrepeatered transmission distances; manufacturability; packaging; positive chromatic dispersion; pulse spreading; signal propagation; specially designed fiber; standard single mode fiber; transmission fiber; zero net pulse spreading; Amplitude modulation; Design optimization; Erbium-doped fiber amplifier; Manufacturing; Optical fiber devices; Optical fiber dispersion; Optical fibers; Optical interferometry; Optical receivers; Optical waveguides;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/50.337485
  • Filename
    337485