• DocumentCode
    1105470
  • Title

    The heteroepitaxial ridge-overgrown distributed feedback laser

  • Author

    Tsang, W.T. ; Olsson, Anders N. ; Logan, Ralph A. ; Henry, Charles H. ; Johnson, L.F. ; Bowers, John E. ; Long, Judith

  • Author_Institution
    Bell Laboratories, Murray Hill, NJ, USA
  • Volume
    21
  • Issue
    6
  • fYear
    1985
  • fDate
    6/1/1985 12:00:00 AM
  • Firstpage
    519
  • Lastpage
    526
  • Abstract
    A new distributed feedback laser, the heteroepitaxial ridge-overgrown distributed feedback (HRO-DFB) laser, is proposed and demonstrated. The growth steps permit post-active-layer growth determination of the grating period, and the fabrication of this laser is simple with an automatic alignment of the current confinement to the ridge-overgrowths, which form the strip-loaded waveguide of the laser. The lateral overgrowth extending over the oxide films on both sides of the window stripe enhances the effect of grating feedback. Both LPE and MO-CVD have been employed successfully for the ridge overgrowth. The HRO-DFB laser was shown to operate in stable single-longitudinal mode with no observable mode partition events under 2 Gbit/s pseudorandom pulse modulation. The dynamic spectral width under 2 Gbit/s modulation was typically 0.5-2 Å. Other characteristics of these 1.5 μm HRO-DFB lasers include ∼8 mW/facet of single-longitudinal mode output power, and narrow beam divergence of 10° operating in the fundamental transverse mode in the junction plane. The CW thresholds were usually 50-100 mA. Transmission experiments with dispersive fibers (17 ps/km-nm) at \\sim1.55 \\mu m at 2 Gbits/s over 82 km and at 420 Mbits/s over 203 km confirmed that the HRO-DFB laser is an excellent a single-frequency optical source for use in optical communication applications.
  • Keywords
    Distributed feedback (DFB) lasers; Epitaxial growth; Optical fiber transmitters, lasers; Distributed feedback devices; Fiber lasers; Gratings; Laser feedback; Laser modes; Laser stability; Optical device fabrication; Optical fiber communication; Optical waveguides; Waveguide lasers;
  • fLanguage
    English
  • Journal_Title
    Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9197
  • Type

    jour

  • DOI
    10.1109/JQE.1985.1072693
  • Filename
    1072693