• DocumentCode
    2442638
  • Title

    Remote surface roughness scattering in ultrathin-oxide MOSFETs

  • Author

    Gámiz, F. ; Godoy, A. ; Jimenez-Molinos, Francisco ; Cartujo-Cassinello, P. ; Roldán, J.B.

  • Author_Institution
    Dept. de Electron. y Tecnologia de Computadores, Granada Univ., Spain
  • fYear
    2003
  • fDate
    16-18 Sept. 2003
  • Firstpage
    403
  • Lastpage
    406
  • Abstract
    A model to study the effect of the roughness at the poly-Si/SiO/sub 2/ interface in silicon inversion layers on the electron mobility is obtained. Screening of the resulting perturbation potential by the channel carriers is taken into account, considering Green´s functions for metal-oxide-semiconductor (MOS) geometry, i.e. taking into account the finite thickness of the gate oxide. Mobility of electrons is evaluated at room temperature by the Monte Carlo method, taking into account the simultaneous contribution of phonon scattering, SiO/sub 2//Si interface roughness scattering, Coulomb scattering and remote surface roughness scattering. The contribution of excited subbands is considered. The resulting remote surface roughness scattering is shown to be strongly dependent on the oxide thickness, and degrades mobility curves at low inversion charge concentrations. The results obtained show that the effect of this scattering mechanism cannot be ignored when the oxide thickness is below 5 nm, (as in actual devices), even when (as is usual) very high doping concentrations are used.
  • Keywords
    Green´s function methods; MOSFET; Monte Carlo methods; Schrodinger equation; electron mobility; elemental semiconductors; semiconductor device models; silicon; silicon compounds; surface roughness; surface scattering; 5 nm; Green´s functions; Monte Carlo method; Schroedinger equation; SiO/sub 2/-Si; channel carrier perturbation potential; doping concentration; electron mobility; excited subbands; finite gate oxide thickness; interface roughness scattering; inversion charge concentration; phonon scattering; remote surface roughness scattering; silicon inversion layers; ultrathin-oxide MOSFET; Electron mobility; Geometry; Green´s function methods; MOSFETs; Phonons; Rough surfaces; Scattering; Silicon; Surface roughness; Temperature;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    European Solid-State Device Research, 2003. ESSDERC '03. 33rd Conference on
  • Conference_Location
    Estoril, Portugal
  • Print_ISBN
    0-7803-7999-3
  • Type

    conf

  • DOI
    10.1109/ESSDERC.2003.1256899
  • Filename
    1256899