Electric field-induced creation and directional motion of domain walls and skyrmion bubbles

Magnetization dynamics driven by an electric field could provide long-term benefits to information technologies because of its ultralow power consumption. Meanwhile, the Dzyaloshinskii-Moriya interaction in interfacially asymmetric multilayers consisting of ferromagnetic and heavy-metal layers can s...

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Main Authors: Ma, Chuang, Zhang, Xichao, Xia, Jing, Ezawa, Motohiko, Jiang, Wanjun, Ono, Teruo, Piramanayagam, S. N., Morisako, Akimitsu, Zhou, Yan, Liu, Xiaoxi
Other Authors: School of Physical and Mathematical Sciences
Format: Article
Language:English
Published: 2021
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Online Access:https://hdl.handle.net/10356/151346
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1513462021-06-22T09:17:14Z Electric field-induced creation and directional motion of domain walls and skyrmion bubbles Ma, Chuang Zhang, Xichao Xia, Jing Ezawa, Motohiko Jiang, Wanjun Ono, Teruo Piramanayagam, S. N. Morisako, Akimitsu Zhou, Yan Liu, Xiaoxi School of Physical and Mathematical Sciences Science::Physics Skyrmions Skyrmion Bubbles Magnetization dynamics driven by an electric field could provide long-term benefits to information technologies because of its ultralow power consumption. Meanwhile, the Dzyaloshinskii-Moriya interaction in interfacially asymmetric multilayers consisting of ferromagnetic and heavy-metal layers can stabilize topological spin textures, such as chiral domain walls, skyrmions, and skyrmion bubbles. These topological spin textures can be controlled by an electric field and hold promise for building advanced spintronic devices. Here, we present an experimental and numerical study on the electric field-induced creation and directional motion of topological spin textures in magnetic multilayer films and racetracks with thickness gradient and interfacial Dzyaloshinskii-Moriya interaction at room temperature. We find that the electric field-induced directional motion of chiral domain wall is accompanied by the creation of skyrmion bubbles at certain conditions. We also demonstrate that the electric field variation can induce motion of skyrmion bubbles. Our findings may provide opportunities for developing skyrmion-based devices with ultralow power consumption. Nanyang Technological University X.Z. acknowledges the support by the Presidential Postdoctoral Fellowship of the Chinese University of Hong Kong, Shenzhen (CUHKSZ). M.E. acknowledges the support by the Grants-in-Aid for Scientific Research from JSPS KAKENHI (Grants JP18H03676, JP17K05490, and JP15H05854) and also the support by CREST, JST (Grants JPMJCR16F1 and JPMJCR1874). W.J. was supported by the National Key R&D Program of China (Grants 2017YFA0206200 and 2016YFA0302300), the National Natural Science Foundation of China (Grants 11774194 and 51831005), the 1000-Youth talent program of China, the State Key Laboratory of Low-Dimensional Quantum Physics, and the Beijing Advanced Innovation Center for Future Chip (ICFC). T.O. acknowledges the support by the Grants-in-Aid for Scientific Research from JSPS KAKENHI (Grant 15H05702). S.N.P. acknowledges the support by NTU-JSPS research grant. Y.Z. acknowledges the support by the President’s Fund of CUHKSZ, the National Natural Science Foundation of China (Grant 11574137), and Shenzhen Fundamental Research Fund (Grants JCYJ20160331164412545 and JCYJ20170410171958839). X.L. acknowledges the support by the Grants-in-Aid for Scientific Research from JSPS KAKENHI (Grants 17K19074, 26600041, and 22360122). 2021-06-22T09:17:14Z 2021-06-22T09:17:14Z 2019 Journal Article Ma, C., Zhang, X., Xia, J., Ezawa, M., Jiang, W., Ono, T., Piramanayagam, S. N., Morisako, A., Zhou, Y. & Liu, X. (2019). Electric field-induced creation and directional motion of domain walls and skyrmion bubbles. Nano Letters, 19(1), 353-361. https://dx.doi.org/10.1021/acs.nanolett.8b03983 1530-6984 0000-0001-9656-9696 https://hdl.handle.net/10356/151346 10.1021/acs.nanolett.8b03983 30537837 2-s2.0-85058882607 1 19 353 361 en Nano Letters © 2018 American Chemical Society. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::Physics
Skyrmions
Skyrmion Bubbles
spellingShingle Science::Physics
Skyrmions
Skyrmion Bubbles
Ma, Chuang
Zhang, Xichao
Xia, Jing
Ezawa, Motohiko
Jiang, Wanjun
Ono, Teruo
Piramanayagam, S. N.
Morisako, Akimitsu
Zhou, Yan
Liu, Xiaoxi
Electric field-induced creation and directional motion of domain walls and skyrmion bubbles
description Magnetization dynamics driven by an electric field could provide long-term benefits to information technologies because of its ultralow power consumption. Meanwhile, the Dzyaloshinskii-Moriya interaction in interfacially asymmetric multilayers consisting of ferromagnetic and heavy-metal layers can stabilize topological spin textures, such as chiral domain walls, skyrmions, and skyrmion bubbles. These topological spin textures can be controlled by an electric field and hold promise for building advanced spintronic devices. Here, we present an experimental and numerical study on the electric field-induced creation and directional motion of topological spin textures in magnetic multilayer films and racetracks with thickness gradient and interfacial Dzyaloshinskii-Moriya interaction at room temperature. We find that the electric field-induced directional motion of chiral domain wall is accompanied by the creation of skyrmion bubbles at certain conditions. We also demonstrate that the electric field variation can induce motion of skyrmion bubbles. Our findings may provide opportunities for developing skyrmion-based devices with ultralow power consumption.
author2 School of Physical and Mathematical Sciences
author_facet School of Physical and Mathematical Sciences
Ma, Chuang
Zhang, Xichao
Xia, Jing
Ezawa, Motohiko
Jiang, Wanjun
Ono, Teruo
Piramanayagam, S. N.
Morisako, Akimitsu
Zhou, Yan
Liu, Xiaoxi
format Article
author Ma, Chuang
Zhang, Xichao
Xia, Jing
Ezawa, Motohiko
Jiang, Wanjun
Ono, Teruo
Piramanayagam, S. N.
Morisako, Akimitsu
Zhou, Yan
Liu, Xiaoxi
author_sort Ma, Chuang
title Electric field-induced creation and directional motion of domain walls and skyrmion bubbles
title_short Electric field-induced creation and directional motion of domain walls and skyrmion bubbles
title_full Electric field-induced creation and directional motion of domain walls and skyrmion bubbles
title_fullStr Electric field-induced creation and directional motion of domain walls and skyrmion bubbles
title_full_unstemmed Electric field-induced creation and directional motion of domain walls and skyrmion bubbles
title_sort electric field-induced creation and directional motion of domain walls and skyrmion bubbles
publishDate 2021
url https://hdl.handle.net/10356/151346
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