Article (Scientific journals)
Model GW band structure of InAs and GaAs in the wurtzite phase
Zanolli, Zeila; Fuchs, F.; Furthmueller, J. et al.
2007In Physical Review. B, Condensed Matter and Materials Physics, 75 (24)
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Keywords :
ab initio modelling; III-V semiconductor nanowire; GW approximation
Abstract :
[en] We report quasiparticle calculations of the newly observed wurtzite polymorph of InAs and GaAs. The calculations are performed in the GW approximation (based on a model dielectric function) using plane waves and pseudopotentials. For comparison we also report the study of the zinc-blende phase within the same approximations. In the InAs compound the In 4d electrons play a very important role: whether they are frozen in the core or not leads either to a correct or a wrong band ordering (negative gap) within the local-density appproximation (LDA). We have calculated the GW band structure in both cases. In the first approach, we have estimated the correction to the pd repulsion calculated within the LDA and included this effect in the calculation of the GW corrections to the LDA spectrum. In the second case, we circumvent the negative gap problem by first using the screened exchange approximation and then calculating the GW corrections starting from the so obtained eigenvalues and eigenfunctions. This approach, that can be thought of as a step towards self-consistency, leads to a more realistic band structure and was also used for GaAs. For both InAs and GaAs in the wurtzite phase we predict an increase of the quasiparticle gap with respect to the zinc-blende polytype.
Disciplines :
Physics
Author, co-author :
Zanolli, Zeila ;  Lund University > Physics
Fuchs, F.
Furthmueller, J.
von Barth, U.
Bechstedt, F.
Language :
English
Title :
Model GW band structure of InAs and GaAs in the wurtzite phase
Publication date :
2007
Journal title :
Physical Review. B, Condensed Matter and Materials Physics
ISSN :
1098-0121
eISSN :
1550-235X
Publisher :
American Physical Society, Woodbury, United States - New York
Volume :
75
Issue :
24
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 28 October 2011

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