• DocumentCode
    3555611
  • Title

    Physical mechanisms responsible for short channel effects in MOS devices

  • Author

    Nguyen, T.N. ; Plummer, J.D.

  • Author_Institution
    Stanford University
  • Volume
    27
  • fYear
    1981
  • fDate
    1981
  • Firstpage
    596
  • Lastpage
    599
  • Abstract
    The physical mechanisms responsible for short-channel effects in MOS devices are described. It is shown that short-channel effects are caused by the penetration of junction fields into the channel region. These fields effectively decrease the substrate doping, thus leading to a lower threshold voltage and a larger depletion region depth. Computer simulations explicitly verify the lower effective substrate doping and larger depletion depth in short-channel devices. The junction fields are found to decay exponentially with distance from the junction edges and to vary sinusoidally in the vertical direction. Both the decay length and the wave length are found to be proportional to (3tox+ Wc). The usefulness of the new physical understanding is demonstrated in a comparison of the short-channel effects of conventional and buried channel MOSFETs using both computer simulation and experimental results. Some of the limitations of charge sharing models are also discussed.
  • Keywords
    Computer simulation; Doping; Electrodes; Geometry; MOS devices; MOSFETs; Marine vehicles; Poisson equations; Solid modeling; Threshold voltage;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electron Devices Meeting, 1981 International
  • Type

    conf

  • DOI
    10.1109/IEDM.1981.190155
  • Filename
    1482108