In situ strain tuning of the metal-insulator-transition of Ca2RuO4 in angle-resolved photoemission experiments

The role of the lattice in the correlated metal-insulator transition of Ca2RuO4 has led to significant interest but experiments that are at the same time sensitive to crystal and electronic structure are difficult. Riccò et al. successfully combine ARPES measurements with in situ strain tuning acros...

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Autores principales: S. Riccò, M. Kim, A. Tamai, S. McKeown Walker, F. Y. Bruno, I. Cucchi, E. Cappelli, C. Besnard, T. K. Kim, P. Dudin, M. Hoesch, M. J. Gutmann, A. Georges, R. S. Perry, F. Baumberger
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/a81fad97ded54f50add3b656cbdb7cf8
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spelling oai:doaj.org-article:a81fad97ded54f50add3b656cbdb7cf82021-12-02T17:32:00ZIn situ strain tuning of the metal-insulator-transition of Ca2RuO4 in angle-resolved photoemission experiments10.1038/s41467-018-06945-02041-1723https://doaj.org/article/a81fad97ded54f50add3b656cbdb7cf82018-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-06945-0https://doaj.org/toc/2041-1723The role of the lattice in the correlated metal-insulator transition of Ca2RuO4 has led to significant interest but experiments that are at the same time sensitive to crystal and electronic structure are difficult. Riccò et al. successfully combine ARPES measurements with in situ strain tuning across the Mott transition.S. RiccòM. KimA. TamaiS. McKeown WalkerF. Y. BrunoI. CucchiE. CappelliC. BesnardT. K. KimP. DudinM. HoeschM. J. GutmannA. GeorgesR. S. PerryF. BaumbergerNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-7 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
S. Riccò
M. Kim
A. Tamai
S. McKeown Walker
F. Y. Bruno
I. Cucchi
E. Cappelli
C. Besnard
T. K. Kim
P. Dudin
M. Hoesch
M. J. Gutmann
A. Georges
R. S. Perry
F. Baumberger
In situ strain tuning of the metal-insulator-transition of Ca2RuO4 in angle-resolved photoemission experiments
description The role of the lattice in the correlated metal-insulator transition of Ca2RuO4 has led to significant interest but experiments that are at the same time sensitive to crystal and electronic structure are difficult. Riccò et al. successfully combine ARPES measurements with in situ strain tuning across the Mott transition.
format article
author S. Riccò
M. Kim
A. Tamai
S. McKeown Walker
F. Y. Bruno
I. Cucchi
E. Cappelli
C. Besnard
T. K. Kim
P. Dudin
M. Hoesch
M. J. Gutmann
A. Georges
R. S. Perry
F. Baumberger
author_facet S. Riccò
M. Kim
A. Tamai
S. McKeown Walker
F. Y. Bruno
I. Cucchi
E. Cappelli
C. Besnard
T. K. Kim
P. Dudin
M. Hoesch
M. J. Gutmann
A. Georges
R. S. Perry
F. Baumberger
author_sort S. Riccò
title In situ strain tuning of the metal-insulator-transition of Ca2RuO4 in angle-resolved photoemission experiments
title_short In situ strain tuning of the metal-insulator-transition of Ca2RuO4 in angle-resolved photoemission experiments
title_full In situ strain tuning of the metal-insulator-transition of Ca2RuO4 in angle-resolved photoemission experiments
title_fullStr In situ strain tuning of the metal-insulator-transition of Ca2RuO4 in angle-resolved photoemission experiments
title_full_unstemmed In situ strain tuning of the metal-insulator-transition of Ca2RuO4 in angle-resolved photoemission experiments
title_sort in situ strain tuning of the metal-insulator-transition of ca2ruo4 in angle-resolved photoemission experiments
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/a81fad97ded54f50add3b656cbdb7cf8
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