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Emergent phenomena at oxide interfaces
by
Keimer, B.
, Tokura, Y.
, Kawasaki, M.
, Hwang, H. Y.
, Nagaosa, N.
, Iwasa, Y.
in
639/301/119/1003
/ 639/301/119/544
/ 639/301/119/995
/ 639/301/119/997
/ Biomaterials
/ Chemistry and Materials Science
/ Condensed Matter Physics
/ Materials Science
/ Nanoscience
/ Nanotechnology
/ Optical and Electronic Materials
/ Physical properties
/ review-article
/ Superconductivity
/ Thin films
2012
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Emergent phenomena at oxide interfaces
by
Keimer, B.
, Tokura, Y.
, Kawasaki, M.
, Hwang, H. Y.
, Nagaosa, N.
, Iwasa, Y.
in
639/301/119/1003
/ 639/301/119/544
/ 639/301/119/995
/ 639/301/119/997
/ Biomaterials
/ Chemistry and Materials Science
/ Condensed Matter Physics
/ Materials Science
/ Nanoscience
/ Nanotechnology
/ Optical and Electronic Materials
/ Physical properties
/ review-article
/ Superconductivity
/ Thin films
2012
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Emergent phenomena at oxide interfaces
by
Keimer, B.
, Tokura, Y.
, Kawasaki, M.
, Hwang, H. Y.
, Nagaosa, N.
, Iwasa, Y.
in
639/301/119/1003
/ 639/301/119/544
/ 639/301/119/995
/ 639/301/119/997
/ Biomaterials
/ Chemistry and Materials Science
/ Condensed Matter Physics
/ Materials Science
/ Nanoscience
/ Nanotechnology
/ Optical and Electronic Materials
/ Physical properties
/ review-article
/ Superconductivity
/ Thin films
2012
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Journal Article
Emergent phenomena at oxide interfaces
2012
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Overview
From magnetism, ferroelectricity and superconductivity to electrical and thermal properties, oxides show a broad range of phenomena of fundamental as well as practical relevance. Reviewed here are the emergent phenomena arising at the interface between oxide materials, which have attracted considerable interest based on advances in thin-film deposition techniques.
Recent technical advances in the atomic-scale synthesis of oxide heterostructures have provided a fertile new ground for creating novel states at their interfaces. Different symmetry constraints can be used to design structures exhibiting phenomena not found in the bulk constituents. A characteristic feature is the reconstruction of the charge, spin and orbital states at interfaces on the nanometre scale. Examples such as interface superconductivity, magneto-electric coupling, and the quantum Hall effect in oxide heterostructures are representative of the scientific and technological opportunities in this rapidly emerging field.
Publisher
Nature Publishing Group UK,Nature Publishing Group
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