• DocumentCode
    1045608
  • Title

    Total Ionizing Dose Effects on Strained {\\rm HfO}_{2} -Based nMOSFETs

  • Author

    Park, Hyunwoo ; Dixit, Sriram K. ; Choi, Youn Sung ; Schrimpf, Ronald D. ; Fleetwood, Daniel M. ; Nishida, Toshikazu ; Thompson, Scott E.

  • Author_Institution
    Electr. & Comput. Eng. Dept., Univ. of Florida, Gainesville, FL
  • Volume
    55
  • Issue
    6
  • fYear
    2008
  • Firstpage
    2981
  • Lastpage
    2985
  • Abstract
    Radiation-induced charge trapping and mobility degradation are measured on uniaxially stressed HfO2-based nMOSFETs. Controlled external mechanical stress is applied via a four-point bending jig while the samples are irradiated using 10-keV X-rays. Positive charge trapping is observed for unstressed devices, and for devices irradiated under both compressive and tensile stress. Reduced trapped charge is measured as the uniaxial stress level increases. These results suggest that the increased stress leads to a reconfiguration of defect microstructure, as compared to the unstressed devices. The reconfiguration consists of changes in bond lengths and angles and a corresponding change in trap energy levels, which can (1) reduce the probability that a defect can capture holes, (2) increase the probability for electron and trapped-hole recombination, and/or (3) increase the mobility of the transporting holes in the oxides of the devices that are irradiated under stress. These results show that increased mechanical stress in high-k dielectrics does not degrade their radiation hardness. We also observe that the post-irradiation channel mobility degrades less in uniaxially stressed devices than unstressed devices.
  • Keywords
    MOSFET; hafnium compounds; high-k dielectric thin films; radiation hardening (electronics); HfO2; controlled external mechanical stress; four-point bending jig; high-k dielectrics; mobility degradation; positive charge trapping; post-irradiation channel mobility; radiation hardness; radiation-induced charge trapping; reduced trapped charge; strained nMOSFET; total ionizing dose effects; Charge measurement; Compressive stress; Current measurement; Degradation; Electron traps; Hafnium oxide; MOSFETs; Stress control; Stress measurement; Tensile stress; Hafnium oxide $({rm HfO}_{2})$; X-ray; high-k; metal-oxide-semiconductor-field-effect-transistors (MOSFETs); radiation damage; strained-silicon; uniaxial;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2008.2006837
  • Filename
    4723750