Universal stripe order as a precursor of the superconducting phase in pressurized BaFe2Se3 Spin Ladder

Identifying a universal magnetic ground state across the iron-based superconductor family may help to propose a universal pairing glue responsible for unconventional superconductivity in these intriguing materials. Here, the authors discover an antiferromagnetic stripe order that appears as a precur...

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Main Authors: Wen-Gen Zheng, Victor Balédent, Claire V. Colin, Françoise Damay, Jean-Pascal Rueff, Anne Forget, Dorothée Colson, Pascale Foury-Leylekian
Format: Article
Language:English
Published: Nature Portfolio 2022-07-01
Series:Communications Physics
Online Access:https://doi.org/10.1038/s42005-022-00955-7
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author Wen-Gen Zheng
Victor Balédent
Claire V. Colin
Françoise Damay
Jean-Pascal Rueff
Anne Forget
Dorothée Colson
Pascale Foury-Leylekian
author_facet Wen-Gen Zheng
Victor Balédent
Claire V. Colin
Françoise Damay
Jean-Pascal Rueff
Anne Forget
Dorothée Colson
Pascale Foury-Leylekian
author_sort Wen-Gen Zheng
collection DOAJ
description Identifying a universal magnetic ground state across the iron-based superconductor family may help to propose a universal pairing glue responsible for unconventional superconductivity in these intriguing materials. Here, the authors discover an antiferromagnetic stripe order that appears as a precursor to superconductivity in pressured BaFe2Se3, suggesting that the presence of magnetic fluctuations from the stripe order may hold the key to the superconducting pairing of the iron-based superconductors.
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spelling doaj.art-f856b480e91c4639be4a7bb590e8e1ee2022-12-22T02:12:01ZengNature PortfolioCommunications Physics2399-36502022-07-01511610.1038/s42005-022-00955-7Universal stripe order as a precursor of the superconducting phase in pressurized BaFe2Se3 Spin LadderWen-Gen Zheng0Victor Balédent1Claire V. Colin2Françoise Damay3Jean-Pascal Rueff4Anne Forget5Dorothée Colson6Pascale Foury-Leylekian7Université Paris-Saclay, CNRS, Laboratoire de Physique des SolidesUniversité Paris-Saclay, CNRS, Laboratoire de Physique des SolidesInstitut Néel, Université Grenoble Alpes, CNRSLaboratoire Léon Brillouin, CEA-CNRS UMR12Synchrotron SOLEIL, L’Orme des MerisiersSPEC, CEA, CNRS-UMR3680, Université Paris-SaclaySPEC, CEA, CNRS-UMR3680, Université Paris-SaclayUniversité Paris-Saclay, CNRS, Laboratoire de Physique des SolidesIdentifying a universal magnetic ground state across the iron-based superconductor family may help to propose a universal pairing glue responsible for unconventional superconductivity in these intriguing materials. Here, the authors discover an antiferromagnetic stripe order that appears as a precursor to superconductivity in pressured BaFe2Se3, suggesting that the presence of magnetic fluctuations from the stripe order may hold the key to the superconducting pairing of the iron-based superconductors.https://doi.org/10.1038/s42005-022-00955-7
spellingShingle Wen-Gen Zheng
Victor Balédent
Claire V. Colin
Françoise Damay
Jean-Pascal Rueff
Anne Forget
Dorothée Colson
Pascale Foury-Leylekian
Universal stripe order as a precursor of the superconducting phase in pressurized BaFe2Se3 Spin Ladder
Communications Physics
title Universal stripe order as a precursor of the superconducting phase in pressurized BaFe2Se3 Spin Ladder
title_full Universal stripe order as a precursor of the superconducting phase in pressurized BaFe2Se3 Spin Ladder
title_fullStr Universal stripe order as a precursor of the superconducting phase in pressurized BaFe2Se3 Spin Ladder
title_full_unstemmed Universal stripe order as a precursor of the superconducting phase in pressurized BaFe2Se3 Spin Ladder
title_short Universal stripe order as a precursor of the superconducting phase in pressurized BaFe2Se3 Spin Ladder
title_sort universal stripe order as a precursor of the superconducting phase in pressurized bafe2se3 spin ladder
url https://doi.org/10.1038/s42005-022-00955-7
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