October 2009

Journal

Self-interaction correction in multiple scattering theory: application to transition metal oxides

By:
Daene, Markus W; Lueders, Martin; Ernst, Arthur; Diemo, Koedderitzsch; Temmerman, Walter; Szotek, Zdzislawa; Wolfam, Hergert
Journal Name:
Journal of Physics: Condensed Matter
Page Number:
45604
Volume:
21
Issue Number:
4
Publication Date:
October 26, 2009
View DOI Listing:
https://doi.org/10.1088/0953-8984/21/4/045604

Abstract

We apply to transition metal monoxides the self-interaction corrected (SIC) local spin density (LSD) approximation, implemented locally in the multiple scattering theory within the Korringa-Kohn-Rostoker (KKR) band structure method. The calculated electronic structure and in particular magnetic moments and energy gaps are discussed in reference to the earlier SIC results obtained within the LMTO-ASA band structure method, involving transformations between Bloch and Wannier representations to solve the eigenvalue problem and calculate the SIC charge and potential. Since the KKR can be easily extended to treat disordered alloys, by invoking the coherent potential approximation (CPA), in this paper we compare the CPA approach and supercell calculations to study the electronic structure of NiO with cation vacancies.