Emerging magnetism and anomalous Hall effect in iridate–manganite heterostructures

Whilst superlattices containing thin films of 5d transition metal oxides are expected to yield strong interfacial coupling, only weak effects have been observed. Here, the authors report strong coupling between 3d SrMnO3 and 5d SrIrO3due to the interplay of strong Coulomb and spin orbit interactions...

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Autores principales: John Nichols, Xiang Gao, Shinbuhm Lee, Tricia L. Meyer, John W. Freeland, Valeria Lauter, Di Yi, Jian Liu, Daniel Haskel, Jonathan R. Petrie, Er-Jia Guo, Andreas Herklotz, Dongkyu Lee, Thomas Z. Ward, Gyula Eres, Michael R. Fitzsimmons, Ho Nyung Lee
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/affc34ea94c247ed86198d5528acef37
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spelling oai:doaj.org-article:affc34ea94c247ed86198d5528acef372021-12-02T15:35:22ZEmerging magnetism and anomalous Hall effect in iridate–manganite heterostructures10.1038/ncomms127212041-1723https://doaj.org/article/affc34ea94c247ed86198d5528acef372016-09-01T00:00:00Zhttps://doi.org/10.1038/ncomms12721https://doaj.org/toc/2041-1723Whilst superlattices containing thin films of 5d transition metal oxides are expected to yield strong interfacial coupling, only weak effects have been observed. Here, the authors report strong coupling between 3d SrMnO3 and 5d SrIrO3due to the interplay of strong Coulomb and spin orbit interactions.John NicholsXiang GaoShinbuhm LeeTricia L. MeyerJohn W. FreelandValeria LauterDi YiJian LiuDaniel HaskelJonathan R. PetrieEr-Jia GuoAndreas HerklotzDongkyu LeeThomas Z. WardGyula EresMichael R. FitzsimmonsHo Nyung LeeNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-6 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
John Nichols
Xiang Gao
Shinbuhm Lee
Tricia L. Meyer
John W. Freeland
Valeria Lauter
Di Yi
Jian Liu
Daniel Haskel
Jonathan R. Petrie
Er-Jia Guo
Andreas Herklotz
Dongkyu Lee
Thomas Z. Ward
Gyula Eres
Michael R. Fitzsimmons
Ho Nyung Lee
Emerging magnetism and anomalous Hall effect in iridate–manganite heterostructures
description Whilst superlattices containing thin films of 5d transition metal oxides are expected to yield strong interfacial coupling, only weak effects have been observed. Here, the authors report strong coupling between 3d SrMnO3 and 5d SrIrO3due to the interplay of strong Coulomb and spin orbit interactions.
format article
author John Nichols
Xiang Gao
Shinbuhm Lee
Tricia L. Meyer
John W. Freeland
Valeria Lauter
Di Yi
Jian Liu
Daniel Haskel
Jonathan R. Petrie
Er-Jia Guo
Andreas Herklotz
Dongkyu Lee
Thomas Z. Ward
Gyula Eres
Michael R. Fitzsimmons
Ho Nyung Lee
author_facet John Nichols
Xiang Gao
Shinbuhm Lee
Tricia L. Meyer
John W. Freeland
Valeria Lauter
Di Yi
Jian Liu
Daniel Haskel
Jonathan R. Petrie
Er-Jia Guo
Andreas Herklotz
Dongkyu Lee
Thomas Z. Ward
Gyula Eres
Michael R. Fitzsimmons
Ho Nyung Lee
author_sort John Nichols
title Emerging magnetism and anomalous Hall effect in iridate–manganite heterostructures
title_short Emerging magnetism and anomalous Hall effect in iridate–manganite heterostructures
title_full Emerging magnetism and anomalous Hall effect in iridate–manganite heterostructures
title_fullStr Emerging magnetism and anomalous Hall effect in iridate–manganite heterostructures
title_full_unstemmed Emerging magnetism and anomalous Hall effect in iridate–manganite heterostructures
title_sort emerging magnetism and anomalous hall effect in iridate–manganite heterostructures
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/affc34ea94c247ed86198d5528acef37
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