• DocumentCode
    740087
  • Title

    Extraction of the Lateral Position of Border Traps in Nanoscale MOSFETs

  • Author

    Illarionov, Yury ; Bina, Markus ; Tyaginov, Stanislav ; Rott, Karina ; Kaczer, Ben ; Reisinger, Hans ; Grasser, Tibor

  • Author_Institution
    Inst. for Microelectron., Vienna Univ. of Technol., Vienna, Austria
  • Volume
    62
  • Issue
    9
  • fYear
    2015
  • Firstpage
    2730
  • Lastpage
    2737
  • Abstract
    A novel method for the extraction of the lateral position of border traps in nanoscale MOSFETs is presented. Using technology computer-aided design (TCAD) simulations, we demonstrate that the dependence of the trap-induced threshold voltage shift on the drain bias is more sensitive to the lateral trap position than to the impact of random dopants. Based on this, the lateral defect position can be determined with a precision of several percent of the channel length. To demonstrate the correct functionality of our technique, we apply it to extract the lateral positions of experimentally observed traps. Although the most accurate algorithm is based on time-consuming TCAD simulations, we propose a simplified analytic expression, which allows for the extraction of the lateral trap position directly from the experimental data. While the uncertainty introduced by random dopants is <;10% for the TCAD model, the additional errors introduced by the simple analytic expression still provide trap positions accurate to 5% for the devices with 20-nm channel length and 20%-25% for 100-nm-long devices.
  • Keywords
    MOSFET; nanoelectronics; semiconductor device models; TCAD simulations; border traps; drain bias; lateral position; nanoscale MOSFET; random dopants; simplified analytic expression; size 100 nm; size 20 nm; technology computer-aided design simulations; trap positions; trap-induced threshold voltage shift; Accuracy; Doping; MOSFET; Nanoscale devices; Performance evaluation; Semiconductor process modeling; Shape; Charged traps; defect position; nanoscale MOSFETs; random dopants; threshold voltage shift; threshold voltage shift.;
  • fLanguage
    English
  • Journal_Title
    Electron Devices, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9383
  • Type

    jour

  • DOI
    10.1109/TED.2015.2454433
  • Filename
    7194762