The properties of isolated chiral skyrmions in thin magnetic films

A. O. Leonov*, T. L. Monchesky, N. Romming, A. Kubetzka, A. N. Bogdanov, R. Wiesendanger

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

280 Citations (Scopus)
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Abstract

Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two decades ago. However, until recently they have been observed in a form of skyrmionic condensates (hexagonal lattices and other mesophases). In this paper we report experimental and theoretical investigations of isolated chiral skyrmions discovered in PdFe/Ir(111) bilayers two years ago by Romming et al (2013 Science 341 636). The results of spin-polarized scanning tunneling microscopy analyzed within the continuum and discrete models provide a consistent description of isolated skyrmions in thin layers. The existence region of chiral skyrmions is restricted by strip-out instabilities at low fields and a collapse at high fields. We demonstrate that the same equations describe axisymmetric localized states in all condensed matter systems with broken mirror symmetry, and thus our findings establish basic properties of isolated skyrmions common for chiral liquid crystals, different classes of noncentrosymmetric magnets, ferroelectrics, and multiferroics.

Original languageEnglish
Article number065003
Number of pages16
JournalNew Journal of Physics
Volume18
DOIs
Publication statusPublished - 31-May-2016

Keywords

  • chiral skyrmion
  • collapse field
  • thin films
  • REAL-SPACE OBSERVATION
  • ROOM-TEMPERATURE
  • PHASE-TRANSITIONS
  • MIXED-STATE
  • FERROMAGNETS
  • STABILITY
  • LATTICE
  • FIELD
  • DYNAMICS
  • MNSI

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