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Universal method for magnetic skyrmion bubble generation by controlling the stripe domain instability

Physics

Universal method for magnetic skyrmion bubble generation by controlling the stripe domain instability

K. Moon, S. Yang, et al.

Dive into the exciting world of magnetic skyrmions, topological swirling spin textures that promise revolutionary advancements in spintronics! This research conducted by Kyoung-Woong Moon, Seungmo Yang, Tae-Seong Ju, Changsoo Kim, Byoung Sun Chun, Sungkyun Park, and Chanyong Hwang unveils a universal method for creating skyrmions through stripe domain instability manipulation, paving the way for next-generation skyrmion-based devices.

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~3 min • Beginner • English
Abstract
Magnetic skyrmions, which are topological swirling spin textures, have drawn much attention in spintronics because of their use as an information carrier with distinct robustness rooted in their topological nature. Real-time generation of skyrmions is therefore imperative for realizing skyrmion-based spintronic devices. However, to date, experimental demonstration has been limited to exquisite works with well-tuned samples. Here, we report a method to generate skyrmions by driving the stripe instability via an in-plane magnetic field. We have demonstrated that the key parameter determining the stripe domain instability is the stripe width, regardless of other material parameters. This skyrmion generation method can be applicable to generic magnetic films with perpendicular magnetic anisotropy. Our work will facilitate the development of skyrmion-based devices by offering a general method for controlling a large skyrmion population.
Publisher
NPG Asia Materials
Published On
Jan 01, 2021
Authors
Kyoung-Woong Moon, Seungmo Yang, Tae-Seong Ju, Changsoo Kim, Byoung Sun Chun, Sungkyun Park, Chanyong Hwang
Tags
magnetic skyrmions
spintronics
topological textures
stripe domain instability
magnetic films
perpendicular magnetic anisotropy
skyrmion population
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