• DocumentCode
    1395220
  • Title

    Simulation and optimization of metal-insulator-semiconductor inversion-layer silicon solar cells

  • Author

    Kuhlmann, Burkhard ; Aberle, Armin G. ; Hezel, Rudolf ; Heiser, Gernot

  • Author_Institution
    Inst. fur Solarenergieforschung Hameln/Emmerthal, Germany
  • Volume
    47
  • Issue
    11
  • fYear
    2000
  • fDate
    11/1/2000 12:00:00 AM
  • Firstpage
    2167
  • Lastpage
    2178
  • Abstract
    Metal-insulator-semiconductor inversion-layer (MIS-IL) silicon solar cells are promising devices for photovoltaic energy conversion due to the ease of junction fabrication. In order to improve the fundamental understanding of these devices, this paper presents a detailed three-dimensional analysis of existing MIS-IL cells by means of two-dimensional (2-D) numerical modeling and circuit simulation. We implement a physical model suggested in the literature for the tunneling current through the MIS tunnel contact into a device simulator and solve the complete set of drift-diffusion equations for electrons and holes within the silicon in two dimensions. Based on experimentally determined device parameters, a good agreement between simulated and experimental current-voltage (I-V) characteristics is obtained, enabling the spatially resolved determination of resistive and recombinative losses. Furthermore, an optimization study is performed to reveal the efficiency limit of MIS-IL silicon solar cells
  • Keywords
    MIS devices; elemental semiconductors; inversion layers; losses; optimisation; semiconductor device measurement; semiconductor device models; silicon; solar cells; tunnelling; 2D numerical modeling; I-V characteristics; MIS inversion-layer solar cells; MIS tunnel contact; Si; Si solar cells; circuit simulation; current-voltage characteristics; device simulator; drift-diffusion equations; metal-insulator-semiconductor solar cells; optimization; photovoltaic energy conversion; physical model; recombinative losses; resistive losses; three-dimensional analysis; tunneling current; Circuit simulation; Energy conversion; Fabrication; Metal-insulator structures; Numerical models; Photovoltaic cells; Photovoltaic systems; Silicon; Solar power generation; Two dimensional displays;
  • fLanguage
    English
  • Journal_Title
    Electron Devices, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9383
  • Type

    jour

  • DOI
    10.1109/16.877180
  • Filename
    877180