Barker, C. E. A., Parton-Barr, C., Marrows, C. H. orcid.org/0000-0003-4812-6393 et al. (2 more authors) (Accepted: 2025) Skyrmion motion in a synthetic antiferromagnet driven by asymmetric spin wave emission. Physical Review B: Condensed Matter and Materials Physics. ISSN: 2469-9950 (In Press)
Abstract
Skyrmions have been proposed as new information carriers in racetrack memory devices. To realise such devices, a small size; high speed of propagation; and minimal skyrmion Hall angle are required. Synthetic antiferromagnets (SAFs) present the ideal materials system to realise these aims. In this work, we use micromagnetic simulations to propose a new method for manipulating them using exclusively global magnetic fields. An out-of-plane microwave field induces oscillations in the skyrmions radius which in turn emits spin waves. When a static in-plane field is added, this breaks the symmetry of the skyrmions and causes asymmetric spin wave emission. This in turn drives motion of the skyrmions, with the fastest velocities observed at the frequency of the intrinsic out-of-phase breathing mode of the pair of skyrmions. This behaviour is investigated over a range of experimentally realistic antiferromagnetic interlayer exchange coupling strengths, and the results compared to previous works. Through this we demonstrate the true effect of varying the exchange coupling strength, and gain greater insight into the mechanism of skyrmion motion. In an attempt to more accurately reproduce experimental SAF samples, we investigate the effect of changing the ratio between the layer magnetisations in the SAF, and demonstrate that maximum velocity can be achieved when there is 100 % compensation. We also investigate the differences between excitation mechanism, using both electric fields and spin transfer torques to excite skyrmion motion. These results will help to inform the design of future novel computing architectures based on the dynamics of skyrmions in synthetic antiferromagnets.
Metadata
Item Type: | Article |
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Authors/Creators: |
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Copyright, Publisher and Additional Information: | This is an author produced version of an article accepted for publication in Physical Review B (condensed matter and materials physics) (PRB), made available under the terms of the Creative Commons Attribution License (CC-BY), which permits unrestricted use, distribution and reproduction in any medium, provided the original work is properly cited. |
Dates: |
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Institution: | The University of Leeds |
Academic Units: | The University of Leeds > Faculty of Engineering & Physical Sciences (Leeds) > School of Physics and Astronomy (Leeds) |
Funding Information: | Funder Grant number EPSRC Accounts Payable EP/T006803/1 |
Depositing User: | Symplectic Publications |
Date Deposited: | 21 Aug 2025 12:43 |
Last Modified: | 21 Aug 2025 12:43 |
Status: | In Press |
Publisher: | American Physical Society |
Open Archives Initiative ID (OAI ID): | oai:eprints.whiterose.ac.uk:230575 |