peer reviewedWe explore the interplay between topology and eigenmodes by changing the stabilizing mechanism of skyrmion lattices (skX). We focus on two prototypical ultrathin films hosting a hexagonal [Pd/Fe/Ir(111)] and a square [Fe/Ir(111)] skyrmion lattice, which can both be described by an extended Heisenberg Hamiltonian. We first examine whether the Dzyaloshinkskii-Moriya, or the exchange interaction as the leading energy term affects the modes of the hexagonal skX of Pd/Fe/Ir(111). In all cases, we find that the lowest-frequency modes correspond to internal degrees of freedom of individual skyrmions, and suggest a classification based on azimuthal and radial numbers (l,p), with up to l=6 and p=2. We also show that the gyration behavio...
We determined the parameters of a classical spin Hamiltonian describing an Fe monolayer on Pd(111) s...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
We report the most precise observations to date concerning the spin structure of magnetic skyrmions ...
peer reviewedWe explore the interplay between topology and eigenmodes by changing the stabilizing me...
Magnetic skyrmions are topological spin configurations in materials with chiral Dzyaloshinskii-Moriy...
peer reviewedSkyrmions are localized, topologically non-trivial spin structures which have raised hi...
Research on magnetic systems with broken inversion symmetry has been stimulated by the experimental ...
Skyrmions are topologically protected field configurations with particle-like properties that play a...
Magnetic skyrmions (skyrmions hereafter) are recently discovered localized vortexlike magnetic struc...
Skyrmions are prospected as the potential future of data storage due to their topologically protecte...
In confined helimagnetic nanostructures, skyrmionic states in the form of incomplete and isolated sk...
International audienceA magnetic skyrmion is a local whirl of the spin configuration in a magnetic m...
We study the collective dynamics of the Skyrmion crystal in thin films of ferromagnetic metals resul...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...
Magnetic skyrmions are topological magnetic spin structures exhibiting particle-like behaviour. They...
We determined the parameters of a classical spin Hamiltonian describing an Fe monolayer on Pd(111) s...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
We report the most precise observations to date concerning the spin structure of magnetic skyrmions ...
peer reviewedWe explore the interplay between topology and eigenmodes by changing the stabilizing me...
Magnetic skyrmions are topological spin configurations in materials with chiral Dzyaloshinskii-Moriy...
peer reviewedSkyrmions are localized, topologically non-trivial spin structures which have raised hi...
Research on magnetic systems with broken inversion symmetry has been stimulated by the experimental ...
Skyrmions are topologically protected field configurations with particle-like properties that play a...
Magnetic skyrmions (skyrmions hereafter) are recently discovered localized vortexlike magnetic struc...
Skyrmions are prospected as the potential future of data storage due to their topologically protecte...
In confined helimagnetic nanostructures, skyrmionic states in the form of incomplete and isolated sk...
International audienceA magnetic skyrmion is a local whirl of the spin configuration in a magnetic m...
We study the collective dynamics of the Skyrmion crystal in thin films of ferromagnetic metals resul...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...
Magnetic skyrmions are topological magnetic spin structures exhibiting particle-like behaviour. They...
We determined the parameters of a classical spin Hamiltonian describing an Fe monolayer on Pd(111) s...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
We report the most precise observations to date concerning the spin structure of magnetic skyrmions ...