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 t...
Magnetic skyrmions are topological spin configurations in materials with chiral Dzyaloshinskii-Moriy...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Skyrmions are topologically protected non-collinear magnetic structures. Their stability is ideally ...
Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two de...
Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two de...
Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two de...
Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two de...
Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two de...
Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two de...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...
Magnetic skyrmions are topological spin configurations in materials with chiral Dzyaloshinskii-Moriy...
Magnetic skyrmions are topological spin configurations in materials with chiral Dzyaloshinskii-Moriy...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Skyrmions are topologically protected non-collinear magnetic structures. Their stability is ideally ...
Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two de...
Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two de...
Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two de...
Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two de...
Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two de...
Axisymmetric solitonic states (chiral skyrmions) were first predicted theoretically more than two de...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...
Magnetic skyrmions are topological spin configurations in materials with chiral Dzyaloshinskii-Moriy...
Magnetic skyrmions are topological spin configurations in materials with chiral Dzyaloshinskii-Moriy...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Skyrmions are topologically protected non-collinear magnetic structures. Their stability is ideally ...