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Local versus global electronic properties of chalcopyrite alloys: X-ray absorption spectroscopy and ab initio calculations

R. Sarmiento-Pérez, S. Botti, C. Schnohr, I. Lauermann, A. Rubio, B. Johnson

Journal of Applied Physics, 116, 093703, (2014)

DOI: 10.1063/1.4893579

Download: BibTEX

Element-specific unoccupied electronic states of Cu(In, Ga)S2 were studied as a function of the In/Ga ratio by combining X-ray absorption spectroscopy with density functional theory calculations. The S absorption edge shifts with changing In/Ga ratio as expected from the variation of the band gap. In contrast, the cation edge positions are largely independent of composition despite the changing band gap. This unexpected behavior is well reproduced by our calculations and originates from the dependence of the electronic states on the local atomic environment. The changing band gap arises from a changing spatial average of these localized states with changing alloy composition.

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{"type":"article", "name":"r.sarmiento-pérez20149", "author":"R. Sarmiento-Pérez and S. Botti and C. Schnohr and I. Lauermann and A. Rubio and B. Johnson", "title":"Local versus global electronic properties of chalcopyrite alloys: Xray absorption spectroscopy and ab initio calculations", "journal":"Journal of Applied Physics", "volume":"116", "OPTnumber":"9", "OPTmonth":"9", "year":"2014", "OPTpages":"093703", "OPTnote":"", "OPTkey":"ab-initio methods; density functional theory; localized states; semiconductors; minerals; crystal lattices; alloys; stoichiometry; X-ray absorption spectroscopy", "DOI":"10.1063/1.4893579"}
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