• DocumentCode
    1417115
  • Title

    Theory of large-signal direct modulation of extended cavity semiconductor lasers with dispersive loss

  • Author

    Ramunno, L. ; Sipe, J.E.

  • Author_Institution
    Dept. of Phys., Toronto Univ., Ont., Canada
  • Volume
    36
  • Issue
    11
  • fYear
    2000
  • Firstpage
    1299
  • Lastpage
    1311
  • Abstract
    We present a model of coupled semiconductor diode-dispersive extended cavity lasers that describes arbitrarily large current modulation, does not assume uniform photon and carrier densities within the semiconductor diode gain medium, and is simple to implement numerically. In particular, we look at the fiber grating laser, an example of such a coupled system that has been studied as a possible optical communications source. We find simple expressions for the instantaneous frequency and intensity in terms of a few parameters characterizing the dispersion, allowing for the design of the system to minimize chirp. From these expressions we also recover Kazarinov and Henry´s adiabatic chirp formula in the limit of slow modulation and Petermann´s dynamical chirp formula in the limit of uniform carrier and photon densities. We show that in typical cases, where nonuniformity is important, the instantaneous frequency modulation is quantitatively and qualitatively different than is predicted by previous models.
  • Keywords
    chirp modulation; frequency modulation; laser beams; laser cavity resonators; laser theory; optical losses; optical modulation; semiconductor device models; semiconductor lasers; adiabatic chirp formula; arbitrarily large current modulation; chirp; coupled semiconductor diode-dispersive extended cavity lasers; coupled system; design; dispersion; dispersive loss; dynamical chirp formula; extended cavity semiconductor lasers; fiber grating laser; instantaneous frequency; instantaneous frequency modulation; instantaneous intensity; large-signal direct modulation; nonuniformity; optical communications source; semiconductor diode gain medium; slow modulation; uniform carrier density; uniform photon density; Charge carrier density; Chirp; Fiber lasers; Laser modes; Laser theory; Optical coupling; Optical fiber communication; Optical modulation; Semiconductor diodes; Semiconductor lasers;
  • fLanguage
    English
  • Journal_Title
    Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9197
  • Type

    jour

  • DOI
    10.1109/3.890281
  • Filename
    890281