• DocumentCode
    919371
  • Title

    Processing aspects in the low-frequency noise of nMOSFETs on strained-silicon substrates

  • Author

    Simoen, Eddy ; Eneman, Geert ; Verheyen, Peter ; Loo, Roger ; De Meyer, Kristin ; Claeys, Cor

  • Author_Institution
    Interuniversity Microelectron. Center, Leuven, Belgium
  • Volume
    53
  • Issue
    5
  • fYear
    2006
  • fDate
    5/1/2006 12:00:00 AM
  • Firstpage
    1039
  • Lastpage
    1047
  • Abstract
    The impact of different processing factors on the low-frequency (LF) noise of nMOSFETs fabricated in strained-silicon (SSi) substrates will be described. It is shown that the use of an SSi substrate can yield improved LF noise performance compared with standard Czochralski silicon material. This is demonstrated for both full-wafer and selective epitaxial SSi material. The lower 1/f noise points to an improved gate oxide quality, i.e., with a lower interface and bulk defect density, and is correlated with the low-field mobility or transconductance of the transistors. At the same time, it will be demonstrated that there exist defect-related LF noise mechanisms, which generally give rise to excess generation-recombination (GR) noise. Associated with this GR noise, a degradation of either the OFF-state leakage current or the mobility (transconductance) of the devices is observed. It is clear that noise is a sensitive parameter to local defectiveness and may be a useful tool for both materials´ characterization and the analysis of processing-related device degradation mechanisms.
  • Keywords
    1/f noise; MOSFET; carrier mobility; semiconductor device noise; semiconductor epitaxial layers; 1-f noise points; Czochralski silicon material; epitaxial SSi material; gate oxide quality; generation-recombination noise; high mobility; low-frequency noise; nMOSFETs; oxide trap density; strained-silicon substrates; transconductance; Degradation; Low-frequency noise; MOSFETs; Microelectronics; Noise generators; Senior members; Silicon; Substrates; Threshold voltage; Transconductance; High mobility; low-frequency (LF) noise; oxide trap density; strained-silicon (SSi) substrates; threading and misfit dislocations;
  • fLanguage
    English
  • Journal_Title
    Electron Devices, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9383
  • Type

    jour

  • DOI
    10.1109/TED.2006.871859
  • Filename
    1624683