Electrical manipulation of skyrmions in a chiral magnet
Abstract
Writing, erasing and computing are three fundamental operations required by any working electronic devices. Magnetic skyrmions could be basic bits in promising in emerging topological spintronic devices. In particular, skyrmions in chiral magnets have outstanding properties like compact texture, uniform size and high mobility. However, creating, deleting and driving isolated skyrmions, as prototypes of aforementioned basic operations, have been grand challenge in chiral magnets ever since the discovery of skyrmions, and achieving all these three operations in a single device is highly desirable. Here, by engineering chiral magnet CoZnMn into the customized micro-devices for in-situ Lorentz transmission electron microscopy observations, we implement these three operations of skyrmions using nanosecond current pulses with a low a current density about A/m at room temperature. A notched structure can create or delete magnetic skyrmions depending on the direction and magnitude of current pulses. We further show that the magnetic skyrmions can be deterministically shifted step-by-step by current pulses, allowing the establishment of the universal current-velocity relationship. These experimental results have immediate significance towards the skyrmion-based memory or logic devices.
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Cite
@article{arxiv.2108.06755,
title = {Electrical manipulation of skyrmions in a chiral magnet},
author = {Weiwei Wang and Dongsheng Song and Wensen Wei and Pengfei Nan and Shilei Zhang and Binghui Ge and Mingliang Tian and Jiadong Zang and Haifeng Du},
journal= {arXiv preprint arXiv:2108.06755},
year = {2022}
}
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16 pages