Diluted II-VI oxide semiconductors with multiple band gaps

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Publication Type Journal Article
School or College College of Engineering
Department Materials Science & Engineering
Creator Scarpulla, Michael
Other Author Yu, K. M.; Walukiewicz, W.; Wu, J.; Shan, W.; Beeman, J. W.; Dubon, O. D.; Becla, P.
Title Diluted II-VI oxide semiconductors with multiple band gaps
Date 2003-12
Description We report the realization of a new mult-band-gap semiconductor. Zn1-yMnyOxTe1-x alloys have been synthesized using the combination of oxygen ion implantation and pulsed laser melting. Incorporation of small quantities of isovalent oxygen leads to the formation of a narrow, oxygen-derived band of extended states located within the band gap of the Zn1-yMnyTe host. When only 1.3% of Te atoms are replaced with oxygen in a Zn0:88Mn0:12Te crystal the resulting band structure consists of two direct band gaps with interband transitions at ~1:77 and 2.7 eV. This remarkable modification of the band structure is well described by the band anticrossing model. With multiple band gaps that fall within the solar energy spectrum, Zn1-MnyOxTe1-x is a material perfectly satisfying the conditions for single-junction photovoltaics with the potential for power conversion efficiencies surpassing 50%.
Type Text
Publisher American Physical Society
Journal Title Physical Review Letters
Volume 91
Issue 24
DOI 10.1103/PhysRevLett.91.246403
citatation_issn 0031-9007
Subject Highly mismatched alloys; Zinc telluride
Subject LCSH Diluted magnetic semiconductors; Semiconductors -- Defects; Metals -- Defects; Thin films; Ion implantation; Semiconductor doping; Photovoltaic power generation; Solar cells -- Research
Language eng
Bibliographic Citation Yu, K. M., Walukiewicz, W., Wu, J., Shan, W., Beeman, J. W., Scarpulla, M., Dubon, O. D., & Becla, P. (2003). Diluted II-VI oxide semiconductors with multiple band gaps. Physical Review Letters, 91(24), 246403.
Rights Management (c) American Physical Society http://dx.doi.org/10.1103/PhysRevLett.91.246403
Format Medium application/pdf
Format Extent 181,805 bytes
Identifier ir-main,12276
ARK ark:/87278/s6hd8d9b
Setname ir_uspace
ID 706951
Reference URL https://collections.lib.utah.edu/ark:/87278/s6hd8d9b
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