A study of point defect detectors created by Si and Ge implantation

نویسندگان

  • H. L. Meng
  • K. S. Jones
چکیده

Short-time/low-temperature thermal oxidation is known to lead to point defect perturbations in silicon. This study investigates the interaction between oxidation-induced point defects and type II dislocation loops intentionally introduced in silicon via ion implantation. The type II (end-of-range) dislocation loops were introduced via implantation of either Sif ions at 50 keV or Ge+ ions at 100 keV into (1OO)Si wafers at doses ranging from 2X IO” to 1 X 10t6/cm2. Furnace anneals -were done at 900 “C for times between 30 min and 4 h in both a dry oxygen and nitrogen ambient. The change in atom concentration bound by dislocation loops as a result of oxidation was measured by plan-view transmission electron microscopy. The results show type II dislocation loops can be used as point defect detectors. When Ge+ implantation was used to form the dislocation loops, a decrease in trapped atom concentration relative to the control was observed upon oxidation. These results imply that oxidation of high dose Ge+ implanted silicon results either in vacancy injection or provides an excellent sink for interstitials. It is also shown that when Si+ implantation is used to form the dislocation loops, the measured net interstitial flux trapped by dislocation loops is linearly proportional to the total supersaturation of interstitials determined by oxidation-enhanced diffusion studies done by Packan and Plummer [J. Appl. Phys. 68, 4327 (1990)].

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تاریخ انتشار 2011