Large orbital polarization in nickelate-cuprate heterostructures by dimensional control of oxygen coordination

In correlated materials, physical properties depend on orbital occupancy and polarization. Here, a way to control the oxygen coordination via dimensionality of superlattices is presented that results in the change of orbital occupancy by 30%, which is larger than what has been achieved by other meth...

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Autores principales: Zhaoliang Liao, Elizabeth Skoropata, J. W. Freeland, Er-Jia Guo, Ryan Desautels, Xiang Gao, Changhee Sohn, Ankur Rastogi, T. Zac Ward, Tao Zou, Timothy Charlton, Michael R. Fitzsimmons, Ho Nyung Lee
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/86ef41cdeeac447191f35d5eb3fe1286
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spelling oai:doaj.org-article:86ef41cdeeac447191f35d5eb3fe12862021-12-02T17:01:54ZLarge orbital polarization in nickelate-cuprate heterostructures by dimensional control of oxygen coordination10.1038/s41467-019-08472-y2041-1723https://doaj.org/article/86ef41cdeeac447191f35d5eb3fe12862019-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08472-yhttps://doaj.org/toc/2041-1723In correlated materials, physical properties depend on orbital occupancy and polarization. Here, a way to control the oxygen coordination via dimensionality of superlattices is presented that results in the change of orbital occupancy by 30%, which is larger than what has been achieved by other methods.Zhaoliang LiaoElizabeth SkoropataJ. W. FreelandEr-Jia GuoRyan DesautelsXiang GaoChanghee SohnAnkur RastogiT. Zac WardTao ZouTimothy CharltonMichael R. FitzsimmonsHo Nyung LeeNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-7 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zhaoliang Liao
Elizabeth Skoropata
J. W. Freeland
Er-Jia Guo
Ryan Desautels
Xiang Gao
Changhee Sohn
Ankur Rastogi
T. Zac Ward
Tao Zou
Timothy Charlton
Michael R. Fitzsimmons
Ho Nyung Lee
Large orbital polarization in nickelate-cuprate heterostructures by dimensional control of oxygen coordination
description In correlated materials, physical properties depend on orbital occupancy and polarization. Here, a way to control the oxygen coordination via dimensionality of superlattices is presented that results in the change of orbital occupancy by 30%, which is larger than what has been achieved by other methods.
format article
author Zhaoliang Liao
Elizabeth Skoropata
J. W. Freeland
Er-Jia Guo
Ryan Desautels
Xiang Gao
Changhee Sohn
Ankur Rastogi
T. Zac Ward
Tao Zou
Timothy Charlton
Michael R. Fitzsimmons
Ho Nyung Lee
author_facet Zhaoliang Liao
Elizabeth Skoropata
J. W. Freeland
Er-Jia Guo
Ryan Desautels
Xiang Gao
Changhee Sohn
Ankur Rastogi
T. Zac Ward
Tao Zou
Timothy Charlton
Michael R. Fitzsimmons
Ho Nyung Lee
author_sort Zhaoliang Liao
title Large orbital polarization in nickelate-cuprate heterostructures by dimensional control of oxygen coordination
title_short Large orbital polarization in nickelate-cuprate heterostructures by dimensional control of oxygen coordination
title_full Large orbital polarization in nickelate-cuprate heterostructures by dimensional control of oxygen coordination
title_fullStr Large orbital polarization in nickelate-cuprate heterostructures by dimensional control of oxygen coordination
title_full_unstemmed Large orbital polarization in nickelate-cuprate heterostructures by dimensional control of oxygen coordination
title_sort large orbital polarization in nickelate-cuprate heterostructures by dimensional control of oxygen coordination
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/86ef41cdeeac447191f35d5eb3fe1286
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