• DocumentCode
    22045
  • Title

    High Beam Quality in Broad Area Lasers via Suppression of Lateral Carrier Accumulation

  • Author

    Winterfeldt, Martin ; Crump, Paul ; Knigge, Steffen ; Maabdorf, Andre ; Zeimer, Ute ; Erbert, Gotz

  • Author_Institution
    Ferdinand-Braun-Inst., Leibniz-Inst. fur Hochst-Frequenztechnik, Berlin, Germany
  • Volume
    27
  • Issue
    17
  • fYear
    2015
  • fDate
    Sept.1, 1 2015
  • Firstpage
    1809
  • Lastpage
    1812
  • Abstract
    High power 9xx-nm broad-area lasers with improved beam quality are required for many applications, but the physical limitations remain unclear, especially the relative importance of free-carrier and self-heating effects. Experimental data are, therefore, presented on a series of diagnostic lasers where the lateral carrier profile at the edges of the electrical contacts has been modified via implantation in order to assess its influence on beam quality. We show that carrier accumulation at the edges of the (90-μm wide) contacts can be eliminated and that as a consequence, near and far field are narrowed and the rate of increase of beam parameter product (BPP) with self-heating reduces by 35%. Overall, the suppression of lateral carrier accumulation allows BPP <; 2 mm × mrad to be maintained to 7-W optical output, corresponding to a peak linear brightness of 3.5 W/mm × mrad, comparable with the highest reported values for 90-μm stripe devices.
  • Keywords
    brightness; electrical contacts; laser beams; semiconductor lasers; beam parameter product; beam quality; electrical contacts; high power broad-area lasers; lateral carrier accumulation suppression; lateral carrier profile; linear brightness; optical output; power 7 W; self-heating; Brightness; Current measurement; Diode lasers; Laser beams; Measurement by laser beam; Semiconductor device measurement; Semiconductor lasers; Broad area laser; broad area laser; deep implantation; lateral carrier profile; proton bombardment; slow axis beam quality;
  • fLanguage
    English
  • Journal_Title
    Photonics Technology Letters, IEEE
  • Publisher
    ieee
  • ISSN
    1041-1135
  • Type

    jour

  • DOI
    10.1109/LPT.2015.2443186
  • Filename
    7164241