• DocumentCode
    2351814
  • Title

    Buried oxide leakage in low dose SIMOX materials

  • Author

    Nakajima, T. ; Yano, T. ; Hamaguchi, I. ; Tachimori, M. ; Fujita, T.

  • Author_Institution
    Electron. Res. Lab., Nippon Steel Corp., Yamaguchi, Japan
  • fYear
    1994
  • fDate
    3-6 Oct 1994
  • Firstpage
    81
  • Lastpage
    82
  • Abstract
    Low dose SIMOX, which drastically reduces not only the dislocation density in the superficial silicon layer but also the cost of manufacturing SIMOX wafers, is expected to make commercialization of SOI devices progress. One of the problems with low dose SIMOX is the presence of buried oxide leakage due to “pipes”. Its density in low dose SIMOX is one or more order of magnitude higher than that in high dose SIMOX. In this paper we have studied the influence of particles existing on wafers before the oxygen implantation, substrate temperature during the oxygen implantation and annealing temperature on the leakage. From the results we have shown that there are two causes for buried oxide leakage in low dose SIMOX materials: the shadowing effect of oxygen ion beams by particles; and the physical cause in the process of the buried oxide growth. To reduce the leakage, it is necessary to develop a particle-free oxygen implanter and an optimally-controlled technique of growing buried oxides
  • Keywords
    SIMOX; annealing; buried layers; impurities; ion implantation; leakage currents; surface contamination; surface phenomena; SOI device manufacture; Si:O; Si:O-SiO2; annealing temperature; buried oxide growth; buried oxide leakage; low dose SIMOX materials; oxygen implantation; shadowing effect; silica particles; substrate temperature; wafer surface particles; Annealing; Cleaning; Costs; Frequency; Ion beams; MOS capacitors; Semiconductor materials; Silicon compounds; Steel; Temperature;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    SOI Conference, 1994 Proceedings., 1994 IEEE International
  • Conference_Location
    Nantucket, MA
  • Print_ISBN
    0-7803-2406-4
  • Type

    conf

  • DOI
    10.1109/SOI.1994.514256
  • Filename
    514256