2010
DOI: 10.1016/j.cpc.2010.08.005
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Wien2wannier: From linearized augmented plane waves to maximally localized Wannier functions

Abstract: We present an implementation of an interface between the full-potential linearized augmented plane wave package Wien2k and the wannier90 code for the construction of maximally localized Wannier functions. The FORTRAN code and a documentation is made available and results are discussed for SrVO 3 , Sr 2 IrO 4 (including spin-orbit coupling), LaFeAsO, and FeSb 2 .

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Cited by 460 publications
(356 citation statements)
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“…[51][52][53][54] The electronic structure is described by density functional theory using the WIEN2k code. 55,56) Diagonalizing H 0 , we obtain the non-interacting band structure and the Fermi surface.…”
Section: Dynamical Mean Field Theorymentioning
confidence: 99%
See 1 more Smart Citation
“…[51][52][53][54] The electronic structure is described by density functional theory using the WIEN2k code. 55,56) Diagonalizing H 0 , we obtain the non-interacting band structure and the Fermi surface.…”
Section: Dynamical Mean Field Theorymentioning
confidence: 99%
“…54) We introduce the intraorbital hopping parameters (δε xy , δt nn xy , δt nnn xy ) = (−0.025, +0.0125, −0.06625) [eV] into the tight-binding Hamiltonian, which corresponds to the energy shift of the xy orbital band of (δE Γ , δE M , δE X ) = (−0.24, −0.34, +0. 24) [eV] for the unfolded Brillouin zone.…”
Section: Construction Of the D-p Modelmentioning
confidence: 99%
“…52) From this band structure, we obtain a single-orbital model corresponding to Cu d x 2 −y 2 with a maximally localized Wannier basis. 53,54) Figure.2(b) shows the Fermi surface and the density of states of this model at half filling. Since the electronic structure of the electron-doped Nd 2 CuO 4 is very similar to that of HgBa 2 CuO 4 , 14) we adopt this model not only in the hole doped regime, but also in the electron-doped regime.…”
Section: Computational Detailsmentioning
confidence: 99%
“…Subsequently we used Wannier interpolation based on maximally localized Wannier functions (MLWFs) to calculate the Berry curvature and the anomalous Hall conductivity, and thereby to obtain the Chern number. [44][45][46] The Bloch wave functions were projected onto the d local orbitals of Os, Ru, or Fe to obtain MLWFs, 44 …”
Section: Methodsmentioning
confidence: 99%