• DocumentCode
    1954288
  • Title

    EDFA chain control: a comparison of two all-optical approaches

  • Author

    Richards, D.H. ; Ali, Mohamed ; Jackel, J.L.

  • Author_Institution
    City Univ. of New York, NY, USA
  • fYear
    1997
  • fDate
    11-13 Aug. 1997
  • Firstpage
    70
  • Lastpage
    71
  • Abstract
    EDFAs are a key technology enabler for multiwavelength optical communications, but despite their usefulness, a number of significant technological challenges remain. One which can have a large impact, particularly on wavelength routed networks, is cross saturation, i.e. the dependence of the gain in any one channel on the total input power in all channels. When the number of wavelength channels in a saturated EDFA changes, the gain in the remaining channels also changes. The resulting power excursions in the surviving channels can degrade the system performance. Among the variety of methods used to prevent this problem is all-optical gain clamping. In this paper we present the results of a time- and spectrally-resolved simulation of two version of this all-optical stabilization method to examine some of the limitations of these techniques. The model assumes a completely homogeneous gain medium and a commercially available aluminosilicate fiber pumped at 1480 nm. We assume 2 input channels for the results presented, and we drop and add one of them. The numerical results are not necessarily optimized, but can be used to develop a quantitative understanding of the behavior of these amplifier chains.
  • Keywords
    erbium; fibre lasers; gain control; optical communication equipment; optical saturation; optical variables control; wavelength division multiplexing; 1480 nm; 2 input channels; Al/sub 2/O/sub 3/-SiO/sub 2/:Er; EDFA chain control; Er doped fiber amplifier; all-optical approaches; all-optical gain clamping; all-optical stabilization method; aluminosilicate fiber; amplifier chains; completely homogeneous gain medium; cross saturation; gain; multiwavelength optical communications; numerical results; power excursions; saturated EDFA; spectrally-resolved simulation; system performance; time-resolved simulation; total input power; wavelength channels; wavelength routed networks; Clamps; Degradation; Erbium-doped fiber amplifier; Laser stability; Optical fiber communication; Performance gain; Power generation; Ring lasers; System performance; Wavelength routing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Vertical-Cavity Lasers, Technologies for a Global Information Infrastructure, WDM Components Technology, Advanced Semiconductor Lasers and Applications, Gallium Nitride Materials, Processing, and Devi
  • Conference_Location
    Montreal, Que., Canada
  • Print_ISBN
    0-7803-3891-X
  • Type

    conf

  • DOI
    10.1109/LEOSST.1997.619181
  • Filename
    619181