M.T. Birch
Toggle-like current-induced Bloch point dynamics of 3D skyrmion strings in a room temperature nanowire
Birch, M.T.; Cortés-Ortuño, D.; Litzius, K.; Wintz, S.; Schulz, F.; Weigand, M.; Štefančič, A.; Mayoh, D.A.; Balakrishnan, G.; Hatton, P.D.; Schütz, G.
Authors
D. Cortés-Ortuño
K. Litzius
S. Wintz
F. Schulz
M. Weigand
A. Štefančič
D.A. Mayoh
G. Balakrishnan
Professor Peter Hatton p.d.hatton@durham.ac.uk
Emeritus Professor
G. Schütz
Abstract
Research into practical applications of magnetic skyrmions, nanoscale solitons with interesting topological and transport properties, has traditionally focused on two dimensional (2D) thin-film systems. However, the recent observation of novel three dimensional (3D) skyrmion-like structures, such as hopfions, skyrmion strings (SkS), skyrmion bundles, and skyrmion braids, motivates the investigation of new designs, aiming to exploit the third spatial dimension for more compact and higher performance spintronic devices in 3D or curvilinear geometries. A crucial requirement of such device schemes is the control of the 3D magnetic structures via charge or spin currents, which has yet to be experimentally observed. In this work, we utilise real-space imaging to investigate the dynamics of a 3D SkS within a nanowire of Co8Zn9Mn3 at room temperature. Utilising single current pulses, we demonstrate current-induced nucleation of a single SkS, and a toggle-like positional switching of an individual Bloch point at the end of a SkS. The observations highlight the possibility to locally manipulate 3D topological spin textures, opening up a range of design concepts for future 3D spintronic devices.
Citation
Birch, M., Cortés-Ortuño, D., Litzius, K., Wintz, S., Schulz, F., Weigand, M., Štefančič, A., Mayoh, D., Balakrishnan, G., Hatton, P., & Schütz, G. (2022). Toggle-like current-induced Bloch point dynamics of 3D skyrmion strings in a room temperature nanowire. Nature Communications, 13(1), Article 3630. https://doi.org/10.1038/s41467-022-31335-y
Journal Article Type | Article |
---|---|
Acceptance Date | Jun 15, 2022 |
Online Publication Date | Jun 24, 2022 |
Publication Date | 2022 |
Deposit Date | Jul 19, 2022 |
Publicly Available Date | Jul 19, 2022 |
Journal | Nature Communications |
Publisher | Nature Research |
Peer Reviewed | Peer Reviewed |
Volume | 13 |
Issue | 1 |
Article Number | 3630 |
DOI | https://doi.org/10.1038/s41467-022-31335-y |
Public URL | https://durham-repository.worktribe.com/output/1199968 |
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