English

Electronic structure of pristine and Ni-substituted LaFeO$_3$ from near edge x-ray absorption fine structure experiments and first-principles simulations

Strongly Correlated Electrons 2020-08-25 v2

Abstract

We present a joint theoretical and experimental study of the oxygen KK-edge spectra for LaFeO3_3 and homovalent Ni-substituted LaFeO3_3 (LaFe0.75_{0.75}Ni0.25_{0.25}O3_3), using first-principles simulations based on density-functional theory with extended Hubbard functionals and x-ray absorption near edge structure (XANES) measurements. Ground-state and excited-state XANES calculations employ Hubbard on-site UU and inter-site VV parameters determined from first principles and the Lanczos recursive method to obtain absorption cross sections, which allows for a reliable description of XANES spectra in transition-metal compounds in a very broad energy range, with an accuracy comparable to that of hybrid functionals but at a substantially lower cost. We show that standard gradient-corrected exchange-correlation functionals fail in capturing accurately the electronic properties of both materials. In particular, for LaFe0.75_{0.75}Ni0.25_{0.25}O3_3 they do not reproduce its semiconducting behaviour and provide a poor description of the pre-edge features at the O KK edge. The inclusion of Hubbard interactions leads to a drastic improvement, accounting for the semiconducting ground state of LaFe0.75_{0.75}Ni0.25_{0.25}O3_3 and for a good agreement between calculated and measured XANES spectra. We show that the partial substitution of Fe for Ni affects the conduction-band bottom by generating a strongly hybridized O(2p2p)-Ni(3d3d) minority-spin empty electronic state. The present work, based on a consistent correction of self-interaction errors, outlines the crucial role of extended Hubbard functionals to describe the electronic structure of complex transition-metal oxides such as LaFeO3_3 and LaFe0.75_{0.75}Ni0.25_{0.25}O3_3 and paves the way to future studies on similar systems.

Keywords

Cite

@article{arxiv.2004.04142,
  title  = {Electronic structure of pristine and Ni-substituted LaFeO$_3$ from near edge x-ray absorption fine structure experiments and first-principles simulations},
  author = {Iurii Timrov and Piyush Agrawal and Xinyu Zhang and Selma Erat and Riping Liu and Artur Braun and Matteo Cococcioni and Matteo Calandra and Nicola Marzari and Daniele Passerone},
  journal= {arXiv preprint arXiv:2004.04142},
  year   = {2020}
}