Oxygen Nonstoichiometry as a Source of Ferromagnetism in GdCoO3: First-Principle Investigation

Author:

Bouchama H.1,Benayad N.1,Djermouni M.1ORCID,Kacimi S.1,Zaoui A.1

Affiliation:

1. Laboratoire de Physique Computationnelle des Matériaux, Université Djillali Liabès de Sidi Bel-Abbès, Sidi Bel-Abbès 22000, Algérie

Abstract

By using the density functional theory, we have studied the electronic structure and magnetism of the oxygen vacancy defect in GdCoO3 perovskite compound. We have carried out a magnetic stability calculation; between many possible magnetic configurations, the ferromagnetic ordering was predicted in both gadolinium and cobalt sublattices. We have demonstrated that the oxygen vacancy defect causes a ferromagnetic order via a mixture of octahedral HS Co[Formula: see text], tetrahedral HS Co[Formula: see text] and octahedral IS Co[Formula: see text]. From the spin magnetic moment and partial density of state investigation, we have predicted an induced long-range ferromagnetic ordering in nonstoichiometric GdCoO[Formula: see text].

Publisher

World Scientific Pub Co Pte Ltd

Subject

Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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