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In-situ probing of coupled atomic restructuring and metallicity of oxide heterointerfaces induced by polar adsorbates SCIE SCOPUS

Title
In-situ probing of coupled atomic restructuring and metallicity of oxide heterointerfaces induced by polar adsorbates
Authors
Ryu, S.Zhou, H.Paudel, T. R.Irwin, J.Podkaminer, J. P.Bark, C. W.LEE, DAESUKim, T. H.Fong, D. D.Rzchowski, M. S.Tsymbal, E. Y.Eom, C. B.
Date Issued
2017-10-02
Publisher
AMER INST PHYSICS
Abstract
Microscopic understanding of the surface-controlled conductivity of the two dimensional electron gas at complex oxide interfaces is crucial for developing functional interfaces. We observe conductivity and structural modification using in-situ synchrotron surface x-ray diffraction as the surface of a model LaAlO3/SrTiO3 (001) heterostructure is changed by polar adsorbates. We find that polar adsorbate-induced interfacial metallicity reduces polar distortions in the LaAlO3 layer. First-principles density functional theory calculations show that surface dipoles introduced by polar adsorbates lead to additional charge transfer and the reduction of polar displacements in the LaAlO3 layer, consistent with the experimental observations. Our study supports that internal structural deformations controlling functionalities can be driven without the application of direct electrical or thermal bias and offers a route to tuning interfacial properties. These results also highlight the important role of in-situ x-ray scattering with atomic resolution in capturing and exploring structural distortions and charge density changes caused by external perturbations such as chemical adsorption, redox reaction, and generation and/or annihilation of surface defects. Published by AIP Publishing.
URI
https://oasis.postech.ac.kr/handle/2014.oak/95009
DOI
10.1063/1.4991956
ISSN
0003-6951
Article Type
Article
Citation
APPLIED PHYSICS LETTERS, vol. 111, no. 14, 2017-10-02
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