April 2014

Journal

Insulating ferromagnetic oxide films: the controlling role of oxygen vacancy ordering

By:
Salafranca Laforga, Juan I; Salafranca, Juan; Biskup, Nevenko ; Mehta, V; Oxley, Mark P; Suzuki, Yuri; Pennycook, Stephen J; Pantelides, Sokrates; Varela Del Arco, Maria
Journal Name:
Physical Review Letters
Page Number:
87202
Volume:
112
Issue Number:
8
Publication Date:
April 18, 2014
View DOI Listing:
https://doi.org/10.1103/PhysRevLett.112.087202

Abstract

The origin of ferromagnetism in strained epitaxial LaCoO3 films has been a long-standing mystery. Here, we combine atomically resolved Z-contrast imaging, electron-energy-loss spectroscopy, and density-functional calculations to demonstrate that, in epitaxial LaCoO3 films, oxygen-vacancy superstructures release strain, control the film’s electronic properties, and produce the observed ferromagnetism via the excess electrons in the Co d states. Although oxygen vacancies typically dope a material n-type, we find that ordered vacancies induce Peierls-like minigaps which, combined with strain relaxation, trigger a nonlinear rupture of the energy bands, resulting in insulating behavior.