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X-ray imaging of the dynamic magnetic vortex core deformation

  • A. Vansteenkiste
  • , K. W. Chou
  • , M. Weigand
  • , M. Curcic
  • , V. Sackmann
  • , H. Stoll
  • , T. Tyliszczak
  • , G. Woltersdorf
  • , C. H. Back
  • , G. Schütz
  • , B. Van Waeyenberge
  • Ghent University
  • Lawrence Berkeley National Laboratory
  • Max Planck Institute for Intelligent Systems
  • University of Regensburg

Research output: Contribution to journalArticlepeer-review

123 Scopus citations

Abstract

Magnetic thin-film square- or disc-shaped nanostructures with adequate dimensions exhibit a magnetic vortex state: the magnetization vectors lie in the film plane and curl around the structure centre. At the very centre of the vortex, a small, stable core exists where the magnetization points either up or down. The discovery of an easy core reversal mechanism did not only open the possibility of using such systems as magnetic memories, but also initiated the fundamental investigation of the core switching mechanism itself. Theoretical modelling predicted that the reversal is mediated by the creation and annihilation of a vortex-antivortex pair, but experimental support has been lacking until now. We used high-resolution time-resolved magnetic X-ray microscopy to experimentally reveal the first step of the reversal process: the dynamic deformation of the vortex core. In addition, we have measured a critical vortex velocity above which reversal must occur. Both observations support the previously proposed reversal mechanism.

Original languageEnglish
Pages (from-to)332-334
Number of pages3
JournalNature Physics
Volume5
Issue number5
DOIs
StatePublished - May 2009
Externally publishedYes

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