• DocumentCode
    816948
  • Title

    Beam steering in high-power CW quantum-cascade lasers

  • Author

    Bewley, William W. ; Lindle, J. Ryan ; Kim, Chul Soo ; Vurgaftman, Igor ; Meyer, Jerry R. ; Evans, Allan J. ; Yu, Jae Su ; Slivken, Steven ; Razeghi, Manijeh

  • Author_Institution
    Naval Res. Lab., Washington, DC, USA
  • Volume
    41
  • Issue
    6
  • fYear
    2005
  • fDate
    6/1/2005 12:00:00 AM
  • Firstpage
    833
  • Lastpage
    841
  • Abstract
    We report the light-current (L-I), spectral, and far-field characteristics of quantum cascade lasers (QCLs) with seven different wavelengths in the λ=4.3 to 6.3 μm range. In continuous-wave (CW) mode, the narrow-stripe (≈13 μm) epitaxial- side-up devices operated at temperatures up to 340 K, while at 295 K the CW output power was as high as 640 mW with a wallplug efficiency of 4.5%. All devices with λ≥4.7 μm achieved room-temperature CW operation, and at T=200 K several produced powers exceeding 1 W with ≈10% wallplug efficiency. The data indicated both spectral and spatial instabilities of the optical modes. For example, minor variations of the current often produced nonmonotonic hopping between spectra with envelopes as narrow as 5-10 nm or as broad as 200-250 nm. Bistable beam steering, by far-field angles of up to ±12° from the facet normal, also occurred, although even in extreme cases the beam quality never became worse than twice the diffraction limit. The observed steering is consistent with a theory for interference and beating between the two lowest order lateral modes. We also describe simulations of a wide-stripe photonic-crystal distributed-feedback QCL, which based on the current material quality is projected to emit multiple watts of CW power into a single-mode beam at T=200 K.
  • Keywords
    beam steering; laser beams; laser modes; optical bistability; quantum cascade lasers; 200 K; 295 K; 4.3 to 6.3 mum; 4.5 percent; 640 mW; beam quality; bistable beam steering; continuous-wave mode; nonmonotonic hopping; quantum-cascade lasers; wallplug efficiency; wide-stripe photonic-crystal distributed-feedback QCL; Beam steering; Laser beams; Laser modes; Optical bistability; Optical pumping; Power generation; Quantum cascade lasers; Quantum well lasers; Semiconductor lasers; Temperature; Laser beam steering; quantum-well (QW) lasers;
  • fLanguage
    English
  • Journal_Title
    Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9197
  • Type

    jour

  • DOI
    10.1109/JQE.2005.846691
  • Filename
    1432973