Pseudogap phase of cuprate superconductors confined by Fermi surface topology

High-temperature superconductors exhibit pseudogap behaviour that remains of unknown origin, despite many years of intensive study. Here the authors study the onset of the pseudogap under pressure, providing evidence that it requires a hole-like Fermi surface and constraining future theoretical deve...

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Autores principales: N. Doiron-Leyraud, O. Cyr-Choinière, S. Badoux, A. Ataei, C. Collignon, A. Gourgout, S. Dufour-Beauséjour, F. F. Tafti, F. Laliberté, M.-E. Boulanger, M. Matusiak, D. Graf, M. Kim, J.-S. Zhou, N. Momono, T. Kurosawa, H. Takagi, Louis Taillefer
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/203ec510f0e74bb3b73c4c91e7fd01f9
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spelling oai:doaj.org-article:203ec510f0e74bb3b73c4c91e7fd01f92021-12-02T15:38:32ZPseudogap phase of cuprate superconductors confined by Fermi surface topology10.1038/s41467-017-02122-x2041-1723https://doaj.org/article/203ec510f0e74bb3b73c4c91e7fd01f92017-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-02122-xhttps://doaj.org/toc/2041-1723High-temperature superconductors exhibit pseudogap behaviour that remains of unknown origin, despite many years of intensive study. Here the authors study the onset of the pseudogap under pressure, providing evidence that it requires a hole-like Fermi surface and constraining future theoretical developments.N. Doiron-LeyraudO. Cyr-ChoinièreS. BadouxA. AtaeiC. CollignonA. GourgoutS. Dufour-BeauséjourF. F. TaftiF. LalibertéM.-E. BoulangerM. MatusiakD. GrafM. KimJ.-S. ZhouN. MomonoT. KurosawaH. TakagiLouis TailleferNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-7 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
N. Doiron-Leyraud
O. Cyr-Choinière
S. Badoux
A. Ataei
C. Collignon
A. Gourgout
S. Dufour-Beauséjour
F. F. Tafti
F. Laliberté
M.-E. Boulanger
M. Matusiak
D. Graf
M. Kim
J.-S. Zhou
N. Momono
T. Kurosawa
H. Takagi
Louis Taillefer
Pseudogap phase of cuprate superconductors confined by Fermi surface topology
description High-temperature superconductors exhibit pseudogap behaviour that remains of unknown origin, despite many years of intensive study. Here the authors study the onset of the pseudogap under pressure, providing evidence that it requires a hole-like Fermi surface and constraining future theoretical developments.
format article
author N. Doiron-Leyraud
O. Cyr-Choinière
S. Badoux
A. Ataei
C. Collignon
A. Gourgout
S. Dufour-Beauséjour
F. F. Tafti
F. Laliberté
M.-E. Boulanger
M. Matusiak
D. Graf
M. Kim
J.-S. Zhou
N. Momono
T. Kurosawa
H. Takagi
Louis Taillefer
author_facet N. Doiron-Leyraud
O. Cyr-Choinière
S. Badoux
A. Ataei
C. Collignon
A. Gourgout
S. Dufour-Beauséjour
F. F. Tafti
F. Laliberté
M.-E. Boulanger
M. Matusiak
D. Graf
M. Kim
J.-S. Zhou
N. Momono
T. Kurosawa
H. Takagi
Louis Taillefer
author_sort N. Doiron-Leyraud
title Pseudogap phase of cuprate superconductors confined by Fermi surface topology
title_short Pseudogap phase of cuprate superconductors confined by Fermi surface topology
title_full Pseudogap phase of cuprate superconductors confined by Fermi surface topology
title_fullStr Pseudogap phase of cuprate superconductors confined by Fermi surface topology
title_full_unstemmed Pseudogap phase of cuprate superconductors confined by Fermi surface topology
title_sort pseudogap phase of cuprate superconductors confined by fermi surface topology
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/203ec510f0e74bb3b73c4c91e7fd01f9
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