• DocumentCode
    3784942
  • Title

    Optimal design of GaN-AlGaN Bragg-confined structures for intersubband absorption in the near-infrared spectral range

  • Author

    J. Radovanovic;V. Milanovic;Z. Ikonic;D. Indjin;V. Jovanovic;P. Harrison

  • Author_Institution
    Inst. of Phys., Belgrade, Serbia
  • Volume
    39
  • Issue
    10
  • fYear
    2003
  • Firstpage
    1297
  • Lastpage
    1304
  • Abstract
    A method is proposed for the design and optimization of structural parameters of GaN-AlGaN Bragg-confined structures with respect to peak intersubband absorption from the ground to the first excited state,1 /spl rarr/ 2 electronic transition, in the near infrared spectral range. An above-the-barrier bound state was used to extend the range of transition energies above the values available in conventional quantum wells. Intrinsic polarization fields and nonparabolicity effects were taken into account. The selection of optimal parameters, maximizing the absorption at wavelengths of 1.55 and 1.3 /spl mu/m, was performed by using a simulated annealing algorithm, and optimal structures with infinite superlattices as confinement regions were thus designed. These optimal parameters were then used to set realistic, finite structures with a small number of layers, the performance of which was re-evaluated by solving the Schrodinger-Poisson equation self-consistently for a few different levels and profiles of doping.
  • Keywords
    "Electromagnetic wave absorption","Design optimization","Structural engineering","Infrared spectra","Polarization","Simulated annealing","Superlattices","Algorithm design and analysis","Differential equations","Doping profiles"
  • Journal_Title
    IEEE Journal of Quantum Electronics
  • Publisher
    ieee
  • ISSN
    0018-9197
  • Type

    jour

  • DOI
    10.1109/JQE.2003.817584
  • Filename
    1233734