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Nucleation and stability of skyrmions in three-dimensional chiral nanostructures

Physics

Nucleation and stability of skyrmions in three-dimensional chiral nanostructures

Y. Liu, N. Cai, et al.

Explore the fascinating world of magnetization in three-dimensional chiral nanostructures with innovative findings by Yan Liu, Na Cai, Xingxing Yu, and Shengjie Xuan. This research delves into the intriguing dynamics of skyrmion formation and stability within nanotubes and curved thin films, shedding light on how curvature influences these unique magnetic properties.

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Playback language: English
Abstract
This paper investigates the magnetization evolution in three-dimensional chiral nanostructures (nanotubes and circularly curved thin films) using micromagnetic simulations. The study explores skyrmion formation, stability under varying magnetic fields, and structural configurations in these nanostructures. The findings reveal differences in skyrmion nucleation and annihilation between nanotubes and thin films, highlighting the influence of curvature on skyrmion properties.
Publisher
Scientific Reports
Published On
Dec 10, 2020
Authors
Yan Liu, Na Cai, Xingxing Yu, Shengjie Xuan
Tags
magnetization
chiral nanostructures
skyrmion formation
micromagnetic simulations
curvature
stability
thin films
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