• DocumentCode
    1458967
  • Title

    Cost-Effective Thermally-Managed 1.55- \\mu{\\rm m} VECSEL With Hybrid Mirror on Copper Substrate

  • Author

    Zhao, Zhuang ; Bouchoule, Sophie ; Ferlazzo, Laurence ; Sirbu, Alexei ; Mereuta, Alexandru ; Kapon, Eli ; Galopin, Elisabeth ; Harmand, Jean-Christophe ; Décobert, Jean ; Oudar, Jean-Louis

  • Author_Institution
    Lab. for Photonics & Nanostruct., Center Nat. de la Rech. Sci., Marcoussis, France
  • Volume
    48
  • Issue
    5
  • fYear
    2012
  • fDate
    5/1/2012 12:00:00 AM
  • Firstpage
    643
  • Lastpage
    650
  • Abstract
    An electroplated copper substrate was evaluated for heat dissipation in 1.55-μ.m optically pumped vertical extended cavity surface emitting lasers (OP-VECSELs). It is a cost-effective and flexible solution compared with the previously proposed chemical vapor deposition diamond substrate assembled by metallic bonding. Continuous-wave (CW) lasing operation was demonstrated from a device (with copper electroplated substrate) under optical pumping with pump spot diameter of 100 μm and a maximum output power of 260 mW at 0°C; heatsink temperature was achieved. Room-temperature CW operation with an output power of 75 mW and an external quantum efficiency of 35% was achieved in an optimized plane-concave cavity. The thermal resistance and the maximum output power of VECSEL chips assembled with bonded bulk copper and electroplated copper substrates were measured and compared. A value of ~50 K/W was estimated for both devices, and a similar rollover point was observed, which indicates that the electroplated copper solution leads to similar thermal properties as a bonded bulk copper substrate.
  • Keywords
    chemical vapour deposition; copper; diamond; electroplating; laser cavity resonators; laser mirrors; surface emitting lasers; thermal management (packaging); thermal resistance; Cu; chemical vapor deposition; electroplated copper substrate; heat dissipation; hybrid mirror; metallic bonding; power 260 mW; power 75 mW; size 100 mum; temperature 293 K to 298 K; thermally-managed VECSEL; vertical extended cavity surface emitting lasers; wavelength 1.55 mum; Copper; Diamond-like carbon; Gallium arsenide; Gold; Heating; Mirrors; Substrates; 155-$mu{rm m}$ laser emission; electro-plating; optically pumped vertical extended cavity surface emitting lasers (OP-VECSELs); thermal management;
  • fLanguage
    English
  • Journal_Title
    Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9197
  • Type

    jour

  • DOI
    10.1109/JQE.2012.2189371
  • Filename
    6159053