• DocumentCode
    1072863
  • Title

    Semi-Analytical Modeling of Short-Channel Effects in Si and Ge Symmetrical Double-Gate MOSFETs

  • Author

    Tsormpatzoglou, Andreas ; Dimitriadis, Charalabos A. ; Clerc, Raphaël ; Rafhay, Quentin ; Pananakakis, G. ; Ghibaudo, Gérard

  • Author_Institution
    Aristotle Univ. of Thessaloniki, Thessaloniki
  • Volume
    54
  • Issue
    8
  • fYear
    2007
  • Firstpage
    1943
  • Lastpage
    1952
  • Abstract
    A simple analytical expression of the 2-D potential distribution along the channel of silicon symmetrical double-gate (DG) MOSFETs in weak inversion is derived. The analytical solution of the potential distribution is compared with the numerical solution of the 2-D Poisson´s equation in terms of the channel length L, the silicon thickness t Si, and the gate oxide thickness t OX. The obtained results show that the analytical solution describes, with good accuracy, the potential distribution along the channel at different positions from the gate interfaces for well-designed devices when the ratio of L/t Si is ges 2-3. Based on the 2-D extra potential induced in the silicon film due to short-channel effects (SCEs), a semi-analytical expression for the subthreshold drain current of short-channel devices is derived. From the obtained subthreshold characteristics, the extracted device parameters of the subthreshold slope, drain-induced barrier lowering, and threshold voltage are discussed. Application of the proposed model to devices with silicon replaced by germanium demonstrates that the germanium DG MOSFETs are more prone to SCEs.
  • Keywords
    MOSFET; Poisson equation; elemental semiconductors; germanium; silicon; 2D Poisson equation; 2D potential distribution; Ge - Interface; Si - Interface; semianalytical modeling; short-channel effects; symmetrical double-gate MOSFETs; Electric potential; Germanium; Leakage current; MOSFETs; Nanoscale devices; Poisson equations; Semiconductor films; Silicon; Subthreshold current; Threshold voltage; Semi-analytical modeling; Si and Ge double-gate (DG) MOSFETs; short-channel effects (SCEs);
  • fLanguage
    English
  • Journal_Title
    Electron Devices, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9383
  • Type

    jour

  • DOI
    10.1109/TED.2007.901075
  • Filename
    4277986