Oxygen vacancy engineering in pulsed laser deposited BaSnO3 thin films on SrTiO3

W Wilson Román Acevedo (Laboratorio de Ablación Láser, INN-CONICET-CNEA 1 , Gral. Paz 1499, 1650 San Martín,) M Myriam H. Aguirre (Instituto de Nanociencia y Materiales de Aragón (INMA-CSIC) 3 , Campus Rio Ebro C/Mariano Esquillor s/n, 50018 Zaragoza,) B Beatriz Noheda D Diego Rubi (Laboratorio de Ablación Láser, INN-CONICET-CNEA 1 , Gral. Paz 1499, 1650 San Martín,)

Abstract

We demonstrate the tunability of the oxygen content in pulsed laser deposition-grown barium stannate thin films (BaSn O3, BSO) by precisely controlling the background oxygen pressure over a broad range from 0.0004 to 0.13 mbar. The introduction of oxygen vacancies (OV) significantly alters the structural properties of BSO films, inducing a monotonic expansion of the out-of-plane lattice parameter and cell volume as the vacancy concentration increases. The progressive formation of OV was spectroscopically tracked using x-ray photoelectron spectroscopy, providing direct insight into the vacancy evolution. Furthermore, we show that the oxygen stoichiometry in BSO plays a critical role in modulating the sheet resistance of BSO/LaScO3 heterostructures, enabling interface metallic electron conduction. This oxygen content control offers a robust strategy to tailor the electronic properties at the interface, highlighting its potential for oxide electronics and functional interface engineering.

Article Details

Volume / Issue Vol. 127, Issue 6
Published August 11, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (4)

W

Wilson Román Acevedo

Laboratorio de Ablación Láser, INN-CONICET-CNEA 1 , Gral. Paz 1499, 1650 San Martín,

M

Myriam H. Aguirre

Instituto de Nanociencia y Materiales de Aragón (INMA-CSIC) 3 , Campus Rio Ebro C/Mariano Esquillor s/n, 50018 Zaragoza,

B

Beatriz Noheda

D

Diego Rubi

Laboratorio de Ablación Láser, INN-CONICET-CNEA 1 , Gral. Paz 1499, 1650 San Martín,