Cargando…

Electric field induced reversible 180° magnetization switching through tuning of interfacial exchange bias along magnetic easy-axis in multiferroic laminates

E-field control of interfacial exchange coupling and deterministic switching of magnetization have been demonstrated in two sets of ferromagnetic(FM)/antiferromagnetic(AFM)/ferroelectric(FE) multiferroic heterostructures, including NiFe/NiCoO/glass/PZN-PT (011) and NiFe/FeMn/glass/PZN-PT (011). We d...

Descripción completa

Detalles Bibliográficos
Autores principales: Xue, Xu, Zhou, Ziyao, Peng, Bin, Zhu, Mingmin, Zhang, Yijun, Ren, Wei, Ren, Tao, Yang, Xi, Nan, Tianxiang, Sun, Nian X., Liu, Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4649679/
https://www.ncbi.nlm.nih.gov/pubmed/26576658
http://dx.doi.org/10.1038/srep16480
_version_ 1782401398205317120
author Xue, Xu
Zhou, Ziyao
Peng, Bin
Zhu, Mingmin
Zhang, Yijun
Ren, Wei
Ren, Tao
Yang, Xi
Nan, Tianxiang
Sun, Nian X.
Liu, Ming
author_facet Xue, Xu
Zhou, Ziyao
Peng, Bin
Zhu, Mingmin
Zhang, Yijun
Ren, Wei
Ren, Tao
Yang, Xi
Nan, Tianxiang
Sun, Nian X.
Liu, Ming
author_sort Xue, Xu
collection PubMed
description E-field control of interfacial exchange coupling and deterministic switching of magnetization have been demonstrated in two sets of ferromagnetic(FM)/antiferromagnetic(AFM)/ferroelectric(FE) multiferroic heterostructures, including NiFe/NiCoO/glass/PZN-PT (011) and NiFe/FeMn/glass/PZN-PT (011). We designed this experiment to achieve exchange bias tuning along the magnetic easy axis, which is critical for realizing reversible 180° magnetization deterministic switching at zero or small magnetic bias. Strong exchange coupling were established across AFM-FM interfaces, which plays an important role in voltage control of magnetization switching. Through the competition between the E-field induced uniaxial anisotropy in ferromagnetic layer and unidirectional anisotropy in antiferromagnetic layer, the exchange bias was significantly shifted by up to |∆H(ex)|/H(ex) = 8% in NiFe/FeMn/glass/PZN-PT (011) and 13% in NiFe/NiCoO/glass/PZN-PT (011). In addition, the square shape of the hysteresis loop, as well as a strong shape tunability of |∆H(ex)|/H(c) = 67.5 ~ 125% in NiFe/FeMn/glass/PZN-PT and 30 ~ 38% in NiFe/NiCoO/glass/PZN-PT were achieved, which lead to a near 180° magnetization switching. Electrical tuning of interfacial exchange coupling in FM/AFM/FE systems paves a new way for realizing magnetoelectric random access memories and other memory technologies.
format Online
Article
Text
id pubmed-4649679
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-46496792015-11-23 Electric field induced reversible 180° magnetization switching through tuning of interfacial exchange bias along magnetic easy-axis in multiferroic laminates Xue, Xu Zhou, Ziyao Peng, Bin Zhu, Mingmin Zhang, Yijun Ren, Wei Ren, Tao Yang, Xi Nan, Tianxiang Sun, Nian X. Liu, Ming Sci Rep Article E-field control of interfacial exchange coupling and deterministic switching of magnetization have been demonstrated in two sets of ferromagnetic(FM)/antiferromagnetic(AFM)/ferroelectric(FE) multiferroic heterostructures, including NiFe/NiCoO/glass/PZN-PT (011) and NiFe/FeMn/glass/PZN-PT (011). We designed this experiment to achieve exchange bias tuning along the magnetic easy axis, which is critical for realizing reversible 180° magnetization deterministic switching at zero or small magnetic bias. Strong exchange coupling were established across AFM-FM interfaces, which plays an important role in voltage control of magnetization switching. Through the competition between the E-field induced uniaxial anisotropy in ferromagnetic layer and unidirectional anisotropy in antiferromagnetic layer, the exchange bias was significantly shifted by up to |∆H(ex)|/H(ex) = 8% in NiFe/FeMn/glass/PZN-PT (011) and 13% in NiFe/NiCoO/glass/PZN-PT (011). In addition, the square shape of the hysteresis loop, as well as a strong shape tunability of |∆H(ex)|/H(c) = 67.5 ~ 125% in NiFe/FeMn/glass/PZN-PT and 30 ~ 38% in NiFe/NiCoO/glass/PZN-PT were achieved, which lead to a near 180° magnetization switching. Electrical tuning of interfacial exchange coupling in FM/AFM/FE systems paves a new way for realizing magnetoelectric random access memories and other memory technologies. Nature Publishing Group 2015-11-18 /pmc/articles/PMC4649679/ /pubmed/26576658 http://dx.doi.org/10.1038/srep16480 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Xue, Xu
Zhou, Ziyao
Peng, Bin
Zhu, Mingmin
Zhang, Yijun
Ren, Wei
Ren, Tao
Yang, Xi
Nan, Tianxiang
Sun, Nian X.
Liu, Ming
Electric field induced reversible 180° magnetization switching through tuning of interfacial exchange bias along magnetic easy-axis in multiferroic laminates
title Electric field induced reversible 180° magnetization switching through tuning of interfacial exchange bias along magnetic easy-axis in multiferroic laminates
title_full Electric field induced reversible 180° magnetization switching through tuning of interfacial exchange bias along magnetic easy-axis in multiferroic laminates
title_fullStr Electric field induced reversible 180° magnetization switching through tuning of interfacial exchange bias along magnetic easy-axis in multiferroic laminates
title_full_unstemmed Electric field induced reversible 180° magnetization switching through tuning of interfacial exchange bias along magnetic easy-axis in multiferroic laminates
title_short Electric field induced reversible 180° magnetization switching through tuning of interfacial exchange bias along magnetic easy-axis in multiferroic laminates
title_sort electric field induced reversible 180° magnetization switching through tuning of interfacial exchange bias along magnetic easy-axis in multiferroic laminates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4649679/
https://www.ncbi.nlm.nih.gov/pubmed/26576658
http://dx.doi.org/10.1038/srep16480
work_keys_str_mv AT xuexu electricfieldinducedreversible180magnetizationswitchingthroughtuningofinterfacialexchangebiasalongmagneticeasyaxisinmultiferroiclaminates
AT zhouziyao electricfieldinducedreversible180magnetizationswitchingthroughtuningofinterfacialexchangebiasalongmagneticeasyaxisinmultiferroiclaminates
AT pengbin electricfieldinducedreversible180magnetizationswitchingthroughtuningofinterfacialexchangebiasalongmagneticeasyaxisinmultiferroiclaminates
AT zhumingmin electricfieldinducedreversible180magnetizationswitchingthroughtuningofinterfacialexchangebiasalongmagneticeasyaxisinmultiferroiclaminates
AT zhangyijun electricfieldinducedreversible180magnetizationswitchingthroughtuningofinterfacialexchangebiasalongmagneticeasyaxisinmultiferroiclaminates
AT renwei electricfieldinducedreversible180magnetizationswitchingthroughtuningofinterfacialexchangebiasalongmagneticeasyaxisinmultiferroiclaminates
AT rentao electricfieldinducedreversible180magnetizationswitchingthroughtuningofinterfacialexchangebiasalongmagneticeasyaxisinmultiferroiclaminates
AT yangxi electricfieldinducedreversible180magnetizationswitchingthroughtuningofinterfacialexchangebiasalongmagneticeasyaxisinmultiferroiclaminates
AT nantianxiang electricfieldinducedreversible180magnetizationswitchingthroughtuningofinterfacialexchangebiasalongmagneticeasyaxisinmultiferroiclaminates
AT sunnianx electricfieldinducedreversible180magnetizationswitchingthroughtuningofinterfacialexchangebiasalongmagneticeasyaxisinmultiferroiclaminates
AT liuming electricfieldinducedreversible180magnetizationswitchingthroughtuningofinterfacialexchangebiasalongmagneticeasyaxisinmultiferroiclaminates