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High photon energy spectroscopy of NiO : Experiment and theory

Authors :
Panda, Swarup K.
Pal, Banabir
Mandal, Suman
Gorgoi, Mihaela
Das, Shyamashis
Sarkar, Indranil
Drube, Wolfgang
Sun, Weiwei
Di Marco, Igor
Lindblad, Andreas
Thunström, P.
Delin, Anna
Karis, Olof
Kvashnin, Yaroslav O.
van Schilfgaarde, M.
Eriksson, Olle
Sarma, Dipankar Das
Panda, Swarup K.
Pal, Banabir
Mandal, Suman
Gorgoi, Mihaela
Das, Shyamashis
Sarkar, Indranil
Drube, Wolfgang
Sun, Weiwei
Di Marco, Igor
Lindblad, Andreas
Thunström, P.
Delin, Anna
Karis, Olof
Kvashnin, Yaroslav O.
van Schilfgaarde, M.
Eriksson, Olle
Sarma, Dipankar Das
Publication Year :
2016

Abstract

We have revisited the valence band electronic structure of NiO by means of hard x-ray photoemission spectroscopy (HAXPES) together with theoretical calculations using both the GW method and the local density approximation + dynamical mean-field theory (LDA+DMFT) approaches. The effective impurity problem in DMFT is solved through the exact diagonalization (ED) method. We show that the LDA+DMFT method in conjunction with the standard fully localized limit (FLL) and around mean field (AMF) double-counting alone cannot explain all the observed structures in the HAXPES spectra. GW corrections are required for the O bands and Ni-s and p derived states to properly position their binding energies. Our results establish that a combination of the GW and DMFT methods is necessary for correctly describing the electronic structure of NiO in a proper ab initio framework. We also demonstrate that the inclusion of photoionization cross section is crucial to interpret the HAXPES spectra of NiO. We argue that our conclusions are general and that the here suggested approach is appropriate for any complex transition metal oxide.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1280659657
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1103.PhysRevB.93.235138