Magnetic Skyrmions in Thin Films View Full Text


Ontology type: schema:Chapter     


Chapter Info

DATE

2018

AUTHORS

Gong Chen

ABSTRACT

The microstructure of magnetic materials such as magnetic domains and domain walls, linking to its basic physical properties, is generally considered as a result of the interplay between exchange interaction, anisotropy and magnetic dipolar interaction.

PAGES

117-150

References to SciGraph publications

  • 2011-09. Spontaneous atomic-scale magnetic skyrmion lattice in two dimensions in NATURE PHYSICS
  • 2016-05. Observation of room-temperature magnetic skyrmions and their current-driven dynamics in ultrathin metallic ferromagnets in NATURE MATERIALS
  • 2015-12. Perpendicular reading of single confined magnetic skyrmions in NATURE COMMUNICATIONS
  • 2013-12. Topological properties and dynamics of magnetic skyrmions in NATURE NANOTECHNOLOGY
  • 2014-12. Chiral spin torque arising from proximity-induced magnetization in NATURE COMMUNICATIONS
  • 2016-03. Chiral damping of magnetic domain walls in NATURE MATERIALS
  • 2017-12. Antiskyrmions stabilized at interfaces by anisotropic Dzyaloshinskii-Moriya interactions in NATURE COMMUNICATIONS
  • 2007-05. Chiral magnetic order at surfaces driven by inversion asymmetry in NATURE
  • 2016-11-07. Electric-field-driven switching of individual magnetic skyrmions in NATURE NANOTECHNOLOGY
  • 2015-05. A strategy for the design of skyrmion racetrack memories in SCIENTIFIC REPORTS
  • 2015-12. Magnetic microscopy and topological stability of homochiral Néel domain walls in a Pt/Co/AlOx trilayer in NATURE COMMUNICATIONS
  • 2011-02. Near room-temperature formation of a skyrmion crystal in thin-films of the helimagnet FeGe in NATURE MATERIALS
  • 2017-02. Skyrmion Hall effect revealed by direct time-resolved X-ray microscopy in NATURE PHYSICS
  • 2015-10. Linear relation between Heisenberg exchange and interfacial Dzyaloshinskii–Moriya interaction in metal films in NATURE PHYSICS
  • 2016-01-19. Magnetic bilayer-skyrmions without skyrmion Hall effect in NATURE COMMUNICATIONS
  • 2016-05. Room-temperature chiral magnetic skyrmions in ultrathin magnetic nanostructures in NATURE NANOTECHNOLOGY
  • 2015-12. Realization of ground-state artificial skyrmion lattices at room temperature in NATURE COMMUNICATIONS
  • 2010-06. Real-space observation of a two-dimensional skyrmion crystal in NATURE
  • 2013-11. Nucleation, stability and current-induced motion of isolated magnetic skyrmions in nanostructures in NATURE NANOTECHNOLOGY
  • 2015-08. Magnetic skyrmion logic gates: conversion, duplication and merging of skyrmions in SCIENTIFIC REPORTS
  • 2017-08. Magnetic antiskyrmions above room temperature in tetragonal Heusler materials in NATURE
  • 2015-12. Electrical detection of magnetic skyrmions by tunnelling non-collinear magnetoresistance in NATURE NANOTECHNOLOGY
  • 2013-10. Current-induced skyrmion dynamics in constricted geometries in NATURE NANOTECHNOLOGY
  • 2017-03-10. Observation of stable Néel skyrmions in cobalt/palladium multilayers with Lorentz transmission electron microscopy in NATURE COMMUNICATIONS
  • 2015-12. The nature of domain walls in ultrathin ferromagnets revealed by scanning nanomagnetometry in NATURE COMMUNICATIONS
  • 2017-02. Simultaneous control of magnetic topologies for reconfigurable vortex arrays in NPG ASIA MATERIALS
  • 2015-07. Skyrmion-skyrmion and skyrmion-edge repulsions in skyrmion-based racetrack memory in SCIENTIFIC REPORTS
  • 2017-06-08. Current-induced skyrmion generation and dynamics in symmetric bilayers in NATURE COMMUNICATIONS
  • 2013-07. Current-driven dynamics of chiral ferromagnetic domain walls in NATURE MATERIALS
  • 2016-11. Emergent phenomena induced by spin–orbit coupling at surfaces and interfaces in NATURE
  • 2017-06-13. Magnetic skyrmions: advances in physics and potential applications in NATURE REVIEWS MATERIALS
  • 2016-05. Additive interfacial chiral interaction in multilayers for stabilization of small individual skyrmions at room temperature in NATURE NANOTECHNOLOGY
  • 2013-12. Universal current-velocity relation of skyrmion motion in chiral magnets in NATURE COMMUNICATIONS
  • 2013-03. Skyrmions on the track in NATURE NANOTECHNOLOGY
  • 2017-05-19. Out-of-plane chiral domain wall spin-structures in ultrathin in-plane magnets in NATURE COMMUNICATIONS
  • 2014-12. Interface control of the magnetic chirality in CoFeB/MgO heterostructures with heavy-metal underlayers in NATURE COMMUNICATIONS
  • 2015-08. Magnetic bubblecade memory based on chiral domain walls in SCIENTIFIC REPORTS
  • 2014-12. Tailoring magnetic skyrmions in ultra-thin transition metal films in NATURE COMMUNICATIONS
  • 2015-12. Retrieving spin textures on curved magnetic thin films with full-field soft X-ray microscopies in NATURE COMMUNICATIONS
  • 2016-07. Nanoscale magnetic skyrmions in metallic films and multilayers: a new twist for spintronics in NATURE REVIEWS MATERIALS
  • 2016-11. Creation of artificial skyrmions and antiskyrmions by anisotropy engineering in SCIENTIFIC REPORTS
  • 2015-12. Unlocking Bloch-type chirality in ultrathin magnets through uniaxial strain in NATURE COMMUNICATIONS
  • 2013-07. Chiral spin torque at magnetic domain walls in NATURE NANOTECHNOLOGY
  • 2015-12. A new class of chiral materials hosting magnetic skyrmions beyond room temperature in NATURE COMMUNICATIONS
  • 2014-12. Tailoring the topology of an artificial magnetic skyrmion in NATURE COMMUNICATIONS
  • 2015-05. Tunable chiral spin texture in magnetic domain-walls in SCIENTIFIC REPORTS
  • 2017-02. Direct observation of the skyrmion Hall effect in NATURE PHYSICS
  • 2012-04. Emergent electrodynamics of skyrmions in a chiral magnet in NATURE PHYSICS
  • Book

    TITLE

    Topology in Magnetism

    ISBN

    978-3-319-97333-3
    978-3-319-97334-0

    Author Affiliations

    From Grant

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    URI

    http://scigraph.springernature.com/pub.10.1007/978-3-319-97334-0_4

    DOI

    http://dx.doi.org/10.1007/978-3-319-97334-0_4

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1107218181


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