| Literature DB >> 30499678 |
Licong Peng1,2,3, Ying Zhang1,3, Liqin Ke3, Tae-Hoon Kim3, Qiang Zheng4, Jiaqiang Yan4, X-G Zhang5, Yang Gao6, Shouguo Wang6, Jianwang Cai1,2, Baogen Shen1,2, Robert J McQueeney3, Adam Kaminski3, Matthew J Kramer3, Lin Zhou3.
Abstract
The promise of magnetic skyrmions in future spintronic devices hinges on their topologically enhanced stability and the ability to be manipulated by external fields. The technological advantages of nonvolatile zero-field skyrmion lattice (SkL) are significant if their stability and reliability can be demonstrated over a broad temperature range. Here, we study the relaxation dynamics including the evolution and lifetime of zero-field skyrmions generated from field cooling (FC) in an FeGe single-crystal plate via in situ Lorentz transmission electron microscopy (L-TEM). Three types of dynamic switching between zero-field skyrmions and stripes are identified and distinguished. Moreover, the generation and annihilation of these metastable skyrmions can be tailored during and after FC by varying the magnetic fields and the temperature. This dynamic relaxation behavior under the external fields provides a new understanding of zero-field skyrmions for their stability and reliability in spintronic applications and also raises new questions for theoretical models of skyrmion systems.Keywords: FeGe; L-TEM; Relaxation dynamics; activation energy; field cooling (FC); zero-field skyrmions
Year: 2018 PMID: 30499678 DOI: 10.1021/acs.nanolett.8b03553
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189