• DocumentCode
    3543648
  • Title

    Complete optoelectronic simulation of patterned silicon solar cells

  • Author

    Arjmand, A. ; McGuire, D.

  • Author_Institution
    Lumerical Solutions, Inc., Vancouver, BC, Canada
  • fYear
    2013
  • fDate
    19-22 Aug. 2013
  • Firstpage
    13
  • Lastpage
    14
  • Abstract
    Patterned silicon solar cells are fully modeled optically and electrically using Lumerical Solutions´ optical simulation software, FDTD Solutions and electrical simulation solver, DEVICE. The optical simulation calculates the spatial distribution of photon absorption in the silicon when the cell is illuminated by unpolarized sunlight with the AM1.5 solar spectral intensity. The photon absorption data is converted into a spatial generation rate of electron-hole pairs. The electrical simulation uses this generation rate to calculate the collection efficiency of electron and hole carriers, accurately accounting for surface and bulk recombination in silicon. Two main designs are simulated, each with periodic structures: a grating structure and a square pyramid structure. The short-circuit current as well as the overall conversion efficiency for the two devices are calculated.
  • Keywords
    electron-hole recombination; finite difference time-domain analysis; silicon; solar cells; DEVICE tool; FDTD Solutions; Lumerical Solutions; Si; bulk recombination; electrical simulation solver; electron-hole pair spatial generation rate; optical simulation software; optoelectronic simulation; patterned silicon solar cells; photon absorption spatial distribution; solar spectral intensity; surface recombination; Absorption; Gratings; Mathematical model; Optical reflection; Photovoltaic cells; Silicon; Solid modeling;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Numerical Simulation of Optoelectronic Devices (NUSOD), 2013 13th International Conference on
  • Conference_Location
    Vancouver, BC
  • ISSN
    2158-3234
  • Print_ISBN
    978-1-4673-6309-9
  • Type

    conf

  • DOI
    10.1109/NUSOD.2013.6633100
  • Filename
    6633100