Effects of pressure on the band structure of highly mismatched Zn1-yMnyOxTe1-x alloys

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Publication Type Journal Article
School or College College of Engineering
Department Materials Science & Engineering
Creator Scarpulla, Michael
Other Author Shan, W.; Yu, K. M.; Walukiewicz, W.; Beeman, J. W.; Wu, J.; Ager III, J. W.; Dubon, O. D.; Haller, E. E.
Title Effects of pressure on the band structure of highly mismatched Zn1-yMnyOxTe1-x alloys
Date 2004
Description We report photomodulation spectroscopy measurements of the pressure dependence of the optical transition in Zn12yMnyOxTe1-x alloys that is associated with the lowest Ѓ conduction band (termed E2 subband). The pressure-induced energy shift of the E2 transition is nonlinear and much weaker as compared to the change of the direct band gap of Zn0.88Mn0.12Te. The weak pressure dependence of the E2 transition can be fully understood based on the band anticrossing model in which the E2 subband results from an interaction between the extended ZnMnTe conduction-band states and the localized O electronic states.
Type Text
Publisher American Institute of Physics (AIP)
Journal Title Applied Physics Letters
Volume 84
Issue 6
First Page 924
Last Page 926
DOI 10.1063/1.1646457
citatation_issn 36951
Subject Highly mismatched alloys; Zinc telluride; Anticrossing
Subject LCSH Semiconductors -- Defects; Metals -- Defects; Thin films; Ion implantation; Semiconductor doping
Language eng
Bibliographic Citation Shan, W., Yu, K. M., Walukiewicz, W., Beeman, J. W., Wu, J., Ager III, J. W., Scarpulla, M., Dubon, O. D., & Haller, E. E. (2004). Effects of pressure on the band structure of highly mismatched Zn1-yMnyOxTe1-x alloys. Applied Physics Letters, 84(6), 924-6.
Rights Management (c)American Institute of Physics. The following article appeared in Shan, W., Yu, K. M., Walukiewicz, W., Beeman, J. W., Wu, J., Ager III, J. W., Scarpulla, M., Dubon, O. D., & Haller, E. E., Applied Physics Letters, 84(6), 2004 and may be found at http://dx.doi.org/10.1063/1.1646457
Format Medium application/pdf
Format Extent 144,935 bytes
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Reference URL https://collections.lib.utah.edu/ark:/87278/s6rj52vs
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