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Effects of Electronic and Lattice Polarization on the Band Structure of Delafossite Transparent Conductive Oxides

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  • Effects of Electronic and Lattice Polarization on the Band Structure of Delafossite Transparent Conductive Oxides
Author
J. Vidal
Fabio Trani
Fabien Bruneval
M Marques
Silvana Botti
Keywords
paper
Abstract

We use hybrid functionals and restricted self-consistent GW, state-of-the-art theoretical approaches for quasiparticle band structures, to study the electronic states of delafossite Cu(Al,In)O2, the first p-type and bipolar transparent conductive oxides. We show that a self-consistent GW approximation gives remarkably wider band gaps than all the other approaches used so far. Accounting for polaronic effects in the GW scheme we recover a very nice agreement with experiments. Furthermore, the modifications with respect to the Kohn-Sham bands are strongly k dependent, which makes questionable the common practice of using a scissor operator. Finally, our results support the view that the low energy structures found in optical experiments, and initially attributed to an indirect transition, are due to intrinsic defects in the samples.

Year of Publication
2010
Journal
Phys. Rev. Lett.
Volume
104, 136401
URL
http://link.aps.org/doi/10.1103/PhysRevLett.104.136401
DOI
10.1103/PhysRevLett.104.136401
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