Voltage-driven motion of nitrogen ions: a new paradigm for magneto-ionics

In magneto-ionics, ion migration through the material is used to change the materials magnetic properties. Typically oxygen is used as the mobile ion. In this manuscript, the authors demonstrate controlled migration of nitrogen in a CoN film, expanding the possibilities of magneto-ionics.

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Autores principales: Julius de Rojas, Alberto Quintana, Aitor Lopeandía, Joaquín Salguero, Beatriz Muñiz, Fatima Ibrahim, Mairbek Chshiev, Aliona Nicolenco, Maciej O. Liedke, Maik Butterling, Andreas Wagner, Veronica Sireus, Llibertat Abad, Christopher J. Jensen, Kai Liu, Josep Nogués, José L. Costa-Krämer, Enric Menéndez, Jordi Sort
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/dc9c920bc77b4d2ca8c077303f27d357
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spelling oai:doaj.org-article:dc9c920bc77b4d2ca8c077303f27d3572021-12-02T15:33:50ZVoltage-driven motion of nitrogen ions: a new paradigm for magneto-ionics10.1038/s41467-020-19758-x2041-1723https://doaj.org/article/dc9c920bc77b4d2ca8c077303f27d3572020-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19758-xhttps://doaj.org/toc/2041-1723In magneto-ionics, ion migration through the material is used to change the materials magnetic properties. Typically oxygen is used as the mobile ion. In this manuscript, the authors demonstrate controlled migration of nitrogen in a CoN film, expanding the possibilities of magneto-ionics.Julius de RojasAlberto QuintanaAitor LopeandíaJoaquín SalgueroBeatriz MuñizFatima IbrahimMairbek ChshievAliona NicolencoMaciej O. LiedkeMaik ButterlingAndreas WagnerVeronica SireusLlibertat AbadChristopher J. JensenKai LiuJosep NoguésJosé L. Costa-KrämerEnric MenéndezJordi SortNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-8 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Julius de Rojas
Alberto Quintana
Aitor Lopeandía
Joaquín Salguero
Beatriz Muñiz
Fatima Ibrahim
Mairbek Chshiev
Aliona Nicolenco
Maciej O. Liedke
Maik Butterling
Andreas Wagner
Veronica Sireus
Llibertat Abad
Christopher J. Jensen
Kai Liu
Josep Nogués
José L. Costa-Krämer
Enric Menéndez
Jordi Sort
Voltage-driven motion of nitrogen ions: a new paradigm for magneto-ionics
description In magneto-ionics, ion migration through the material is used to change the materials magnetic properties. Typically oxygen is used as the mobile ion. In this manuscript, the authors demonstrate controlled migration of nitrogen in a CoN film, expanding the possibilities of magneto-ionics.
format article
author Julius de Rojas
Alberto Quintana
Aitor Lopeandía
Joaquín Salguero
Beatriz Muñiz
Fatima Ibrahim
Mairbek Chshiev
Aliona Nicolenco
Maciej O. Liedke
Maik Butterling
Andreas Wagner
Veronica Sireus
Llibertat Abad
Christopher J. Jensen
Kai Liu
Josep Nogués
José L. Costa-Krämer
Enric Menéndez
Jordi Sort
author_facet Julius de Rojas
Alberto Quintana
Aitor Lopeandía
Joaquín Salguero
Beatriz Muñiz
Fatima Ibrahim
Mairbek Chshiev
Aliona Nicolenco
Maciej O. Liedke
Maik Butterling
Andreas Wagner
Veronica Sireus
Llibertat Abad
Christopher J. Jensen
Kai Liu
Josep Nogués
José L. Costa-Krämer
Enric Menéndez
Jordi Sort
author_sort Julius de Rojas
title Voltage-driven motion of nitrogen ions: a new paradigm for magneto-ionics
title_short Voltage-driven motion of nitrogen ions: a new paradigm for magneto-ionics
title_full Voltage-driven motion of nitrogen ions: a new paradigm for magneto-ionics
title_fullStr Voltage-driven motion of nitrogen ions: a new paradigm for magneto-ionics
title_full_unstemmed Voltage-driven motion of nitrogen ions: a new paradigm for magneto-ionics
title_sort voltage-driven motion of nitrogen ions: a new paradigm for magneto-ionics
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/dc9c920bc77b4d2ca8c077303f27d357
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