Current-driven dynamics and inhibition of the skyrmion Hall effect of ferrimagnetic skyrmions in GdFeCo films
Non-zero topological charge prevents the straight motion of ferromagnetic skyrmions and hinders their applications. Here, the authors report the stabilization and current-driven dynamics of skyrmions in GdFeCo films in which the ferrimagnetic skyrmions can move with high velocity and reduced skyrmio...
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Nature Portfolio
2018
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oai:doaj.org-article:158a688ac5b2402b93cd6d0ce1644b242021-12-02T17:31:28ZCurrent-driven dynamics and inhibition of the skyrmion Hall effect of ferrimagnetic skyrmions in GdFeCo films10.1038/s41467-018-03378-72041-1723https://doaj.org/article/158a688ac5b2402b93cd6d0ce1644b242018-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03378-7https://doaj.org/toc/2041-1723Non-zero topological charge prevents the straight motion of ferromagnetic skyrmions and hinders their applications. Here, the authors report the stabilization and current-driven dynamics of skyrmions in GdFeCo films in which the ferrimagnetic skyrmions can move with high velocity and reduced skyrmion Hall angle.Seonghoon WooKyung Mee SongXichao ZhangYan ZhouMotohiko EzawaXiaoxi LiuS. FinizioJ. RaabeNyun Jong LeeSang-Il KimSeung-Young ParkYounghak KimJae-Young KimDongjoon LeeOukJae LeeJun Woo ChoiByoung-Chul MinHyun Cheol KooJoonyeon ChangNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-8 (2018) |
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Science Q Seonghoon Woo Kyung Mee Song Xichao Zhang Yan Zhou Motohiko Ezawa Xiaoxi Liu S. Finizio J. Raabe Nyun Jong Lee Sang-Il Kim Seung-Young Park Younghak Kim Jae-Young Kim Dongjoon Lee OukJae Lee Jun Woo Choi Byoung-Chul Min Hyun Cheol Koo Joonyeon Chang Current-driven dynamics and inhibition of the skyrmion Hall effect of ferrimagnetic skyrmions in GdFeCo films |
description |
Non-zero topological charge prevents the straight motion of ferromagnetic skyrmions and hinders their applications. Here, the authors report the stabilization and current-driven dynamics of skyrmions in GdFeCo films in which the ferrimagnetic skyrmions can move with high velocity and reduced skyrmion Hall angle. |
format |
article |
author |
Seonghoon Woo Kyung Mee Song Xichao Zhang Yan Zhou Motohiko Ezawa Xiaoxi Liu S. Finizio J. Raabe Nyun Jong Lee Sang-Il Kim Seung-Young Park Younghak Kim Jae-Young Kim Dongjoon Lee OukJae Lee Jun Woo Choi Byoung-Chul Min Hyun Cheol Koo Joonyeon Chang |
author_facet |
Seonghoon Woo Kyung Mee Song Xichao Zhang Yan Zhou Motohiko Ezawa Xiaoxi Liu S. Finizio J. Raabe Nyun Jong Lee Sang-Il Kim Seung-Young Park Younghak Kim Jae-Young Kim Dongjoon Lee OukJae Lee Jun Woo Choi Byoung-Chul Min Hyun Cheol Koo Joonyeon Chang |
author_sort |
Seonghoon Woo |
title |
Current-driven dynamics and inhibition of the skyrmion Hall effect of ferrimagnetic skyrmions in GdFeCo films |
title_short |
Current-driven dynamics and inhibition of the skyrmion Hall effect of ferrimagnetic skyrmions in GdFeCo films |
title_full |
Current-driven dynamics and inhibition of the skyrmion Hall effect of ferrimagnetic skyrmions in GdFeCo films |
title_fullStr |
Current-driven dynamics and inhibition of the skyrmion Hall effect of ferrimagnetic skyrmions in GdFeCo films |
title_full_unstemmed |
Current-driven dynamics and inhibition of the skyrmion Hall effect of ferrimagnetic skyrmions in GdFeCo films |
title_sort |
current-driven dynamics and inhibition of the skyrmion hall effect of ferrimagnetic skyrmions in gdfeco films |
publisher |
Nature Portfolio |
publishDate |
2018 |
url |
https://doaj.org/article/158a688ac5b2402b93cd6d0ce1644b24 |
work_keys_str_mv |
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