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Structural and Magnetic Properties of MnTe Phases from Ab Initio Calculations
Ist Teil von
Journal of superconductivity and novel magnetism, 2013-05, Vol.26 (5), p.1963-1972
Ort / Verlag
Boston: Springer US
Erscheinungsjahr
2013
Quelle
Alma/SFX Local Collection
Beschreibungen/Notizen
We present ab initio studies of NiAs, zinc-blende, wurtzite, and rocksalt MnTe with possible magnetic arrangements of Mn atoms using spin-polarized density functional theory and generalized gradient approximation for exchange and correlation. The impact of an empirical on-site Coulomb interaction
U
on the lattice constants and ground-state energies is especially studied for antiferromagnetic NiAs and zinc-blende phases, for which contradictory results are found. While
U
=0 eV gives the correct energetic ordering of the crystal structures, the experimental lattice constants can only be reproduced for finite
U
=2,…,4 eV. The Hubbard
U
also strongly influences the magnitude of the magnetic interaction parameters and hence the transition temperatures. In order to obtain Néel temperatures in agreement with experiment a value of about
U
=4 eV is needed. We demonstrate how
U
affects the magnetic coupling via the localization of the Mn3
d
orbitals.