Strain-engineering Mott-insulating La2CuO4

The optimal condition for superconductivity is a long-sought issue but remains challenging. Here, Ivashko et al. demonstrate that the compressive strain to La2CuO4 films enhances the Coulomb and magnetic-exchange interactions relevant for superconductivity, providing a strategy to optimise the paren...

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Autores principales: O. Ivashko, M. Horio, W. Wan, N. B. Christensen, D. E. McNally, E. Paris, Y. Tseng, N. E. Shaik, H. M. Rønnow, H. I. Wei, C. Adamo, C. Lichtensteiger, M. Gibert, M. R. Beasley, K. M. Shen, J. M. Tomczak, T. Schmitt, J. Chang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/66f5813c38d64d11bd2b786321eccc83
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spelling oai:doaj.org-article:66f5813c38d64d11bd2b786321eccc832021-12-02T16:57:06ZStrain-engineering Mott-insulating La2CuO410.1038/s41467-019-08664-62041-1723https://doaj.org/article/66f5813c38d64d11bd2b786321eccc832019-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08664-6https://doaj.org/toc/2041-1723The optimal condition for superconductivity is a long-sought issue but remains challenging. Here, Ivashko et al. demonstrate that the compressive strain to La2CuO4 films enhances the Coulomb and magnetic-exchange interactions relevant for superconductivity, providing a strategy to optimise the parent Mott state for superconductivity.O. IvashkoM. HorioW. WanN. B. ChristensenD. E. McNallyE. ParisY. TsengN. E. ShaikH. M. RønnowH. I. WeiC. AdamoC. LichtensteigerM. GibertM. R. BeasleyK. M. ShenJ. M. TomczakT. SchmittJ. ChangNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-8 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
O. Ivashko
M. Horio
W. Wan
N. B. Christensen
D. E. McNally
E. Paris
Y. Tseng
N. E. Shaik
H. M. Rønnow
H. I. Wei
C. Adamo
C. Lichtensteiger
M. Gibert
M. R. Beasley
K. M. Shen
J. M. Tomczak
T. Schmitt
J. Chang
Strain-engineering Mott-insulating La2CuO4
description The optimal condition for superconductivity is a long-sought issue but remains challenging. Here, Ivashko et al. demonstrate that the compressive strain to La2CuO4 films enhances the Coulomb and magnetic-exchange interactions relevant for superconductivity, providing a strategy to optimise the parent Mott state for superconductivity.
format article
author O. Ivashko
M. Horio
W. Wan
N. B. Christensen
D. E. McNally
E. Paris
Y. Tseng
N. E. Shaik
H. M. Rønnow
H. I. Wei
C. Adamo
C. Lichtensteiger
M. Gibert
M. R. Beasley
K. M. Shen
J. M. Tomczak
T. Schmitt
J. Chang
author_facet O. Ivashko
M. Horio
W. Wan
N. B. Christensen
D. E. McNally
E. Paris
Y. Tseng
N. E. Shaik
H. M. Rønnow
H. I. Wei
C. Adamo
C. Lichtensteiger
M. Gibert
M. R. Beasley
K. M. Shen
J. M. Tomczak
T. Schmitt
J. Chang
author_sort O. Ivashko
title Strain-engineering Mott-insulating La2CuO4
title_short Strain-engineering Mott-insulating La2CuO4
title_full Strain-engineering Mott-insulating La2CuO4
title_fullStr Strain-engineering Mott-insulating La2CuO4
title_full_unstemmed Strain-engineering Mott-insulating La2CuO4
title_sort strain-engineering mott-insulating la2cuo4
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/66f5813c38d64d11bd2b786321eccc83
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