Tuning magnetic spirals beyond room temperature with chemical disorder

Materials with ordered magnetic spiral phases can exhibit ferroelectricity and magnetoelectric effects, but applications are restricted by low magnetic-order temperatures. Here, the authors stabilize the magnetic spiral phase of YBaCuFeO5at room temperature by controlling the iron–copper chemical di...

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Autores principales: Mickaël Morin, Emmanuel Canévet, Adrien Raynaud, Marek Bartkowiak, Denis Sheptyakov, Voraksmy Ban, Michel Kenzelmann, Ekaterina Pomjakushina, Kazimierz Conder, Marisa Medarde
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/b47a92bb26274499add11bb6d05dec23
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spelling oai:doaj.org-article:b47a92bb26274499add11bb6d05dec232021-12-02T16:57:49ZTuning magnetic spirals beyond room temperature with chemical disorder10.1038/ncomms137582041-1723https://doaj.org/article/b47a92bb26274499add11bb6d05dec232016-12-01T00:00:00Zhttps://doi.org/10.1038/ncomms13758https://doaj.org/toc/2041-1723Materials with ordered magnetic spiral phases can exhibit ferroelectricity and magnetoelectric effects, but applications are restricted by low magnetic-order temperatures. Here, the authors stabilize the magnetic spiral phase of YBaCuFeO5at room temperature by controlling the iron–copper chemical disorder.Mickaël MorinEmmanuel CanévetAdrien RaynaudMarek BartkowiakDenis SheptyakovVoraksmy BanMichel KenzelmannEkaterina PomjakushinaKazimierz ConderMarisa MedardeNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-7 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Mickaël Morin
Emmanuel Canévet
Adrien Raynaud
Marek Bartkowiak
Denis Sheptyakov
Voraksmy Ban
Michel Kenzelmann
Ekaterina Pomjakushina
Kazimierz Conder
Marisa Medarde
Tuning magnetic spirals beyond room temperature with chemical disorder
description Materials with ordered magnetic spiral phases can exhibit ferroelectricity and magnetoelectric effects, but applications are restricted by low magnetic-order temperatures. Here, the authors stabilize the magnetic spiral phase of YBaCuFeO5at room temperature by controlling the iron–copper chemical disorder.
format article
author Mickaël Morin
Emmanuel Canévet
Adrien Raynaud
Marek Bartkowiak
Denis Sheptyakov
Voraksmy Ban
Michel Kenzelmann
Ekaterina Pomjakushina
Kazimierz Conder
Marisa Medarde
author_facet Mickaël Morin
Emmanuel Canévet
Adrien Raynaud
Marek Bartkowiak
Denis Sheptyakov
Voraksmy Ban
Michel Kenzelmann
Ekaterina Pomjakushina
Kazimierz Conder
Marisa Medarde
author_sort Mickaël Morin
title Tuning magnetic spirals beyond room temperature with chemical disorder
title_short Tuning magnetic spirals beyond room temperature with chemical disorder
title_full Tuning magnetic spirals beyond room temperature with chemical disorder
title_fullStr Tuning magnetic spirals beyond room temperature with chemical disorder
title_full_unstemmed Tuning magnetic spirals beyond room temperature with chemical disorder
title_sort tuning magnetic spirals beyond room temperature with chemical disorder
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/b47a92bb26274499add11bb6d05dec23
work_keys_str_mv AT mickaelmorin tuningmagneticspiralsbeyondroomtemperaturewithchemicaldisorder
AT emmanuelcanevet tuningmagneticspiralsbeyondroomtemperaturewithchemicaldisorder
AT adrienraynaud tuningmagneticspiralsbeyondroomtemperaturewithchemicaldisorder
AT marekbartkowiak tuningmagneticspiralsbeyondroomtemperaturewithchemicaldisorder
AT denissheptyakov tuningmagneticspiralsbeyondroomtemperaturewithchemicaldisorder
AT voraksmyban tuningmagneticspiralsbeyondroomtemperaturewithchemicaldisorder
AT michelkenzelmann tuningmagneticspiralsbeyondroomtemperaturewithchemicaldisorder
AT ekaterinapomjakushina tuningmagneticspiralsbeyondroomtemperaturewithchemicaldisorder
AT kazimierzconder tuningmagneticspiralsbeyondroomtemperaturewithchemicaldisorder
AT marisamedarde tuningmagneticspiralsbeyondroomtemperaturewithchemicaldisorder
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