• DocumentCode
    1289471
  • Title

    The evaluation of the activation energy of interface state generation by hot-electron injection

  • Author

    Ootsuka, Fumio

  • Author_Institution
    Hitachi Ltd., Tokyo, Japan
  • Volume
    38
  • Issue
    6
  • fYear
    1991
  • fDate
    6/1/1991 12:00:00 AM
  • Firstpage
    1477
  • Lastpage
    1483
  • Abstract
    The method and the results of the evaluation of the activation energy of interface state generation are presented. The energy distribution of the hot electron can be well described as Maxwellian if the effective electron temperature is low enough compared to the energy under consideration, and the activation energy can be defined by means of electron temperature. The activation energy of interface state generation is expressed as Eit nαEimp, where n describes the time dependence of interface state generation α is the ionization efficiency, and Eimp is the activation energy of impact ionization. The obtained value of Eit is 8.7 eV. This value is consistent with the model in which the breaking of the Si-H bond and hydrogen diffusion occur at the interface. This mechanism can be related to a hydrogen diffusion equation which contains interaction between hydrogen and other substances in SiO2 . Based on this diffusion equation, interface state generation can be expressed by the two terms of generation and recombination. This hydrogen diffusion model predicts the hot-carrier phenomena well enough
  • Keywords
    hot carriers; insulated gate field effect transistors; semiconductor device models; H diffusion model; activation energy; diffusion equation; evaluation; hot-electron injection; impact ionization; interface state generation; Degradation; Equations; Hot carriers; Hydrogen; Impact ionization; Interface states; MOSFET circuits; Predictive models; Secondary generated hot electron injection; Temperature distribution;
  • fLanguage
    English
  • Journal_Title
    Electron Devices, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9383
  • Type

    jour

  • DOI
    10.1109/16.81641
  • Filename
    81641