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Hybridization between the conduction band and 3d orbitals in the oxide-based diluted magnetic semiconductor In2-xVxO3

Kobayashi, M. (author)
Ishida, Y. (author)
Hwang, J. I. (author)
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Song, G. S. (author)
Takizawa, M. (author)
Fujimori, A. (author)
Takeda, Y. (author)
Ohkochi, T. (author)
Okane, T. (author)
Saitoh, Y. (author)
Yamagami, H. (author)
Gupta, Amita (author)
KTH,Teknisk materialfysik
Cao, Hongtao (author)
KTH,Teknisk materialfysik
Rao, K. Venkat (author)
KTH,Teknisk materialfysik
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 (creator_code:org_t)
2009
2009
English.
In: Physical Review B. Condensed Matter and Materials Physics. - 1098-0121 .- 1550-235X. ; 79:20, s. 205203-
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The electronic structure of In2-xVxO3 (x=0.08) has been investigated by photoemission spectroscopy and x-ray absorption spectroscopy (XAS). The V 2p core-level photoemission and XAS spectra revealed that the V ion is in the trivalent state, which is the same valence state as that of In in In2O3. The V 3d partial density of states obtained by the resonant photoemission technique showed a sharp peak above the O 2p band. While the O 1s XAS spectrum of In2-xVxO3 was similar to that of In2O3, there were differences in the In 3p and 3d XAS spectra between the V-doped and pure In2O3. The observations give clear evidence for hybridization between the In-derived conduction band and the V 3d orbitals in In2-xVxO3.

Subject headings

NATURVETENSKAP  -- Fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences (hsv//eng)

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art (subject category)

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