Structural study of nickelate based heterostructures

Author:

Varbaro Lucia1ORCID,Mundet Bernat12ORCID,Bandyopadhyay Subhadeep3ORCID,Domínguez Claribel1,Fowlie Jennifer4ORCID,Korosec Lukas1ORCID,Hsu Chih-Ying12ORCID,Alexander Duncan T. L.2ORCID,Ghosez Philippe3ORCID,Triscone Jean-Marc1ORCID

Affiliation:

1. DQMP, University of Geneva 1 , Geneva, Switzerland

2. Electron Spectrometry and Microscopy Laboratory (LSME), Institute of Physics (IPHYS), Ecole Polytechnique Fédérale de Lausanne (EPFL) 2 , Lausanne, Switzerland

3. CESAM Research Unit, Université de Liège 3 , Liège, Belgium

4. Department of Applied Physics, Stanford University 4 , Stanford, California 94305, USA

Abstract

Heterostructures consisting of SmNiO3 and NdNiO3 alternating layers with additional LaAlO3 spacer layers were grown and fully characterized by means of x-ray diffraction, atomic force microscopy, and scanning transmission electron microscopy. A change in the orientation of the orthorhombic long-axis of the nickelate layers is observed when a single unit cell of LaAlO3 is inserted between SmNiO3 and NdNiO3, in agreement with density functional theory calculations. At the same time, the structure of the ultra-thin rhombohedral LaAlO3 layers is affected by their proximity to orthorhombic nickelate layers, with both scanning transmission electron microscopy studies and density functional theory calculations revealing a weak antipolar motion of the La-cation in the LaAlO3 layers that is not present in the bulk rhombohedral structure of this compound.

Funder

Schweizerischer Nationalfonds Zur Förderung der Wissenschaftlichen Forschung

Publisher

AIP Publishing

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