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Nature and Formation of Non-Radiative Defects in GaNAs and InGaAsN

Chen, Weimin, 1959- (author)
Linköpings universitet,Tekniska högskolan,Funktionella elektroniska material
Thinh, N. Q. (author)
Buyanova, Irina, 1960- (author)
Linköpings universitet,Tekniska högskolan,Funktionella elektroniska material
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Hai, P. N. (author)
Xin, H. P. (author)
Tu, C. W. (author)
Li, Wei (author)
Pessa, M. (author)
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 (creator_code:org_t)
Materials Research Society Symposium - Proceedings, Vol. 692 : MRS, 2002
2002
English.
In: MRS Fall Meeting 2001,2001. - Materials Research Society Symposium - Proceedings, Vol. 692 : MRS. ; , s. 67-72
  • Conference paper (peer-reviewed)
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  •  The optically detected magnetic resonance (ODMR) technique has been employed to examine the nature and formation mechanism of non-radiative defects in GaNAs and InGaAsN. In both alloys, two defects were observed and were shown to be deep-level, non-radiative recombination centers. One of the defects has been identified as a complex involving an AsGa antisite. These two defects gain more importance with increasing N composition up to 3%, presumably due to an increase in their concentration. With a further higher N composition, the defects start to lose importance in carrier recombination that is attributed to an increasingly important role of other new non-radiative channels introduced with a high N composition. On the other hand, effect of In composition up to 3% seems to be only marginal. Both defects were shown to be preferably introduced in the alloys during low-temperature growth by molecular beam epitaxy (MBE), but can be rather efficiently removed by post-growth rapid thermal annealing.

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