• DocumentCode
    1182839
  • Title

    Growth of GaNxAs1-x atomic monolayers and their insertion in the vicinity of GaInAs quantum wells

  • Author

    Le Dû, M. ; Harmand, J.C. ; Meunier, K. ; Patriarche, G. ; Oudar, J.L.

  • Author_Institution
    CNRS/Lab. de Photonique et de Nanostructures, Marcoussis, France
  • Volume
    151
  • Issue
    5
  • fYear
    2004
  • Firstpage
    254
  • Lastpage
    258
  • Abstract
    The deposition of N-rich GaNAs atomic monolayers was investigated. Such layers were successfully grown while exposing a GaAs surface to a nitrogen plasma source during a growth interruption at 400°C in a molecular beam epitaxy reactor. N accumulation was confirmed and evaluated by secondary ion mass spectroscopy. This process is compatible with regrowth, as in situ monitored by reflection high-energy electron diffraction. The crystal shows good structural quality, as displayed by transmission electron microscopy, that reveals that the accumulation occurred within 1 nm. In a series of samples, two of these ultrathin GaNAs layers were inserted in GaAs barriers, on each side of a GaInAs quantum well (QW). A drastic effect of the N-rich layers on the QW photoluminescence (PL) intensity was observed, as well as on the carrier recombination dynamics, with a strong influence of the spacer thickness between the QW and the N-rich layers. A time-resolved PL analysis of these samples evidenced nonradiative relaxation times in the range of a few ps. This very short carrier lifetime is attributed to the presence of nonradiative centres related to the N-rich layers close to the QW, and can be used to design ultrafast optical devices.
  • Keywords
    III-V semiconductors; carrier lifetime; carrier relaxation time; electron-hole recombination; gallium arsenide; gallium compounds; indium compounds; molecular beam epitaxial growth; monolayers; photoluminescence; plasma deposition; secondary ion mass spectra; semiconductor growth; semiconductor quantum wells; time resolved spectra; transmission electron microscopy; 400 degC; GaAs; GaAs barriers; GaAs surface; GaInAs; GaInAs quantum well; GaInAs quantum wells; GaNxAs1-x growth; GaNAs; N-rich layers; atomic monolayers; carrier lifetime; carrier recombination; growth interruption; molecular beam epitaxy reactor; nitrogen plasma source; nonradiative centres; nonradiative relaxation times; photoluminescence; reflection high-energy electron diffraction; secondary ion mass spectroscopy; time-resolved photoluminescence analysis; transmission electron microscopy; ultrafast optical device design; ultrathin GaNAs layers;
  • fLanguage
    English
  • Journal_Title
    Optoelectronics, IEE Proceedings -
  • Publisher
    iet
  • ISSN
    1350-2433
  • Type

    jour

  • DOI
    10.1049/ip-opt:20040889
  • Filename
    1367362