Voltage-controlled interlayer coupling in perpendicularly magnetized magnetic tunnel junctions

Exploring electric field controlled magnetism enables high efficiency and low energy consumption spintronic devices. Here, by manipulating oxygen vacancies and magnetic moment, the authors achieve voltage control of magnetic interlayer coupling in GdOxbased magnetic tunnel junctions.

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Autores principales: T. Newhouse-Illige, Yaohua Liu, M. Xu, D. Reifsnyder Hickey, A. Kundu, H. Almasi, Chong Bi, X. Wang, J. W. Freeland, D. J. Keavney, C. J. Sun, Y. H. Xu, M. Rosales, X. M. Cheng, Shufeng Zhang, K. A. Mkhoyan, W. G. Wang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/d5d4d778ad84434a8a34dedf768a2867
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spelling oai:doaj.org-article:d5d4d778ad84434a8a34dedf768a28672021-12-02T17:01:23ZVoltage-controlled interlayer coupling in perpendicularly magnetized magnetic tunnel junctions10.1038/ncomms152322041-1723https://doaj.org/article/d5d4d778ad84434a8a34dedf768a28672017-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms15232https://doaj.org/toc/2041-1723Exploring electric field controlled magnetism enables high efficiency and low energy consumption spintronic devices. Here, by manipulating oxygen vacancies and magnetic moment, the authors achieve voltage control of magnetic interlayer coupling in GdOxbased magnetic tunnel junctions.T. Newhouse-IlligeYaohua LiuM. XuD. Reifsnyder HickeyA. KunduH. AlmasiChong BiX. WangJ. W. FreelandD. J. KeavneyC. J. SunY. H. XuM. RosalesX. M. ChengShufeng ZhangK. A. MkhoyanW. G. WangNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-7 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
T. Newhouse-Illige
Yaohua Liu
M. Xu
D. Reifsnyder Hickey
A. Kundu
H. Almasi
Chong Bi
X. Wang
J. W. Freeland
D. J. Keavney
C. J. Sun
Y. H. Xu
M. Rosales
X. M. Cheng
Shufeng Zhang
K. A. Mkhoyan
W. G. Wang
Voltage-controlled interlayer coupling in perpendicularly magnetized magnetic tunnel junctions
description Exploring electric field controlled magnetism enables high efficiency and low energy consumption spintronic devices. Here, by manipulating oxygen vacancies and magnetic moment, the authors achieve voltage control of magnetic interlayer coupling in GdOxbased magnetic tunnel junctions.
format article
author T. Newhouse-Illige
Yaohua Liu
M. Xu
D. Reifsnyder Hickey
A. Kundu
H. Almasi
Chong Bi
X. Wang
J. W. Freeland
D. J. Keavney
C. J. Sun
Y. H. Xu
M. Rosales
X. M. Cheng
Shufeng Zhang
K. A. Mkhoyan
W. G. Wang
author_facet T. Newhouse-Illige
Yaohua Liu
M. Xu
D. Reifsnyder Hickey
A. Kundu
H. Almasi
Chong Bi
X. Wang
J. W. Freeland
D. J. Keavney
C. J. Sun
Y. H. Xu
M. Rosales
X. M. Cheng
Shufeng Zhang
K. A. Mkhoyan
W. G. Wang
author_sort T. Newhouse-Illige
title Voltage-controlled interlayer coupling in perpendicularly magnetized magnetic tunnel junctions
title_short Voltage-controlled interlayer coupling in perpendicularly magnetized magnetic tunnel junctions
title_full Voltage-controlled interlayer coupling in perpendicularly magnetized magnetic tunnel junctions
title_fullStr Voltage-controlled interlayer coupling in perpendicularly magnetized magnetic tunnel junctions
title_full_unstemmed Voltage-controlled interlayer coupling in perpendicularly magnetized magnetic tunnel junctions
title_sort voltage-controlled interlayer coupling in perpendicularly magnetized magnetic tunnel junctions
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/d5d4d778ad84434a8a34dedf768a2867
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