July 2013

Journal

Quantum confinement induced magnetism in LaNiO3-LaMnO3 superlattices

By:
Dong, Shuai ; Dagotto Mir, Elbio R
Journal Name:
Physical Review B
Page Number:
195116
Volume:
87
Issue Number:
19
Publication Date:
July 11, 2013
View DOI Listing:
https://doi.org/10.1103/PhysRevB.87.195116

Abstract

The emergence of magnetic reconstructions at the interfaces of oxide heterostructures are often explained via subtle modifications in the electronic densities, exchange couplings, or strain. Here, an additional possible route for induced magnetism is studied in the context of the (LaNiO3)n/(LaMnO3)n superlattices using a hybrid tightbinding model. In the LaNiO3 region, the induced magnetizations decouple from the intensity of charge leakage from Mn to Ni, but originate from the spin-filtered quantum confinement present in these nanostructures. In general, the induced magnetization is the largest for the (111)-stacking and the weakest for the (001)-stacking superlattices; results compatible with the exchange bias effects reported byGibert et al. [Nat.Mater. 11, 195 (2012)].


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