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- 1. J. Appl. Phys. 101, 023515 (2007) , “He induced nanovoids for point-defect engineering in B-implanted crystalline Si”, E. Bruno, S. Mirabella, F. Priolo, E. Napolitani, C. Bongiorno, and V. RaineriIn this paper we present a systematic study on the formation of He ion implantation induced nanovoids in Si and how they influence the self-interstitial (Is) supersaturation, thus affecting the diffusion and electrical activation of implanted boron in crystalline silicon. We implanted He ions... (Read more)
- 2. Phys. Rev. B 75, 075201 (2007) , “Influence of isotopic substitution and He coimplantation on defect complexes and voids induced by H ions in silicon”, O. Moutanabbir, B. Terreault, M. Chicoine, F. Schiettekatte, and P. J. SimpsonWe present a detailed study of the comparative thermal evolutions of H- and D-related defects in silicon implanted with 2×1016 H or D/cm2, or coimplanted with 0.25×1016 He/cm2 and 0.7×1016 H/cm2, in both orders.... (Read more)
- 3. J. Appl. Phys. 99, 043509 (2006) , “Influence of metal trapping on the shape of cavities induced by high energy He+ implantation”, R. El Bouayadi, G. Regula, M. Lancin, B. Pichaud, and M. DesvignesIn He implantation induced cavities highly contaminated with metals (Au, Ni, Pt) we found that, when no three-dimensional structure is observed, the shape of the cavities can be strongly modified depending on the nature of the metal and on its trapped quantity. The equilibrium shape of cavities is... (Read more)
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Updated at 2010-07-20 16:50:39
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Materials
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Technique
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Details
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Bond(35 tags)
Defect(interstitial)(18 tags)
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Element(65 tags)
Energy(8 tags)
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Sample(17 tags)
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