Voltage controlled interfacial magnetism through platinum orbits

Electric field control of magnetization is usually weak and this hampers its application for the ultralow-power-consumption spintronic devices. Here, the authors demonstrate a mechanism to enhance the control of magnetic anisotropy by voltage-induced electric quadrupole in a metal–dielectric interfa...

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Autores principales: Shinji Miwa, Motohiro Suzuki, Masahito Tsujikawa, Kensho Matsuda, Takayuki Nozaki, Kazuhito Tanaka, Takuya Tsukahara, Kohei Nawaoka, Minori Goto, Yoshinori Kotani, Tadakatsu Ohkubo, Frédéric Bonell, Eiiti Tamura, Kazuhiro Hono, Tetsuya Nakamura, Masafumi Shirai, Shinji Yuasa, Yoshishige Suzuki
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/756eed7ec5d5461187ee46304f1868d3
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spelling oai:doaj.org-article:756eed7ec5d5461187ee46304f1868d32021-12-02T14:42:00ZVoltage controlled interfacial magnetism through platinum orbits10.1038/ncomms158482041-1723https://doaj.org/article/756eed7ec5d5461187ee46304f1868d32017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15848https://doaj.org/toc/2041-1723Electric field control of magnetization is usually weak and this hampers its application for the ultralow-power-consumption spintronic devices. Here, the authors demonstrate a mechanism to enhance the control of magnetic anisotropy by voltage-induced electric quadrupole in a metal–dielectric interface.Shinji MiwaMotohiro SuzukiMasahito TsujikawaKensho MatsudaTakayuki NozakiKazuhito TanakaTakuya TsukaharaKohei NawaokaMinori GotoYoshinori KotaniTadakatsu OhkuboFrédéric BonellEiiti TamuraKazuhiro HonoTetsuya NakamuraMasafumi ShiraiShinji YuasaYoshishige SuzukiNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-9 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Shinji Miwa
Motohiro Suzuki
Masahito Tsujikawa
Kensho Matsuda
Takayuki Nozaki
Kazuhito Tanaka
Takuya Tsukahara
Kohei Nawaoka
Minori Goto
Yoshinori Kotani
Tadakatsu Ohkubo
Frédéric Bonell
Eiiti Tamura
Kazuhiro Hono
Tetsuya Nakamura
Masafumi Shirai
Shinji Yuasa
Yoshishige Suzuki
Voltage controlled interfacial magnetism through platinum orbits
description Electric field control of magnetization is usually weak and this hampers its application for the ultralow-power-consumption spintronic devices. Here, the authors demonstrate a mechanism to enhance the control of magnetic anisotropy by voltage-induced electric quadrupole in a metal–dielectric interface.
format article
author Shinji Miwa
Motohiro Suzuki
Masahito Tsujikawa
Kensho Matsuda
Takayuki Nozaki
Kazuhito Tanaka
Takuya Tsukahara
Kohei Nawaoka
Minori Goto
Yoshinori Kotani
Tadakatsu Ohkubo
Frédéric Bonell
Eiiti Tamura
Kazuhiro Hono
Tetsuya Nakamura
Masafumi Shirai
Shinji Yuasa
Yoshishige Suzuki
author_facet Shinji Miwa
Motohiro Suzuki
Masahito Tsujikawa
Kensho Matsuda
Takayuki Nozaki
Kazuhito Tanaka
Takuya Tsukahara
Kohei Nawaoka
Minori Goto
Yoshinori Kotani
Tadakatsu Ohkubo
Frédéric Bonell
Eiiti Tamura
Kazuhiro Hono
Tetsuya Nakamura
Masafumi Shirai
Shinji Yuasa
Yoshishige Suzuki
author_sort Shinji Miwa
title Voltage controlled interfacial magnetism through platinum orbits
title_short Voltage controlled interfacial magnetism through platinum orbits
title_full Voltage controlled interfacial magnetism through platinum orbits
title_fullStr Voltage controlled interfacial magnetism through platinum orbits
title_full_unstemmed Voltage controlled interfacial magnetism through platinum orbits
title_sort voltage controlled interfacial magnetism through platinum orbits
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/756eed7ec5d5461187ee46304f1868d3
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