Skyrmions and antiskyrmions are magnetic nano‐objects with distinct chiral, noncollinear spin textures that are found in various magnetic systems with crystal symmetries that give rise to specific Dzyaloshinskii–Moriya exchange vectors. These magnetic nano‐objects are associated with closely related helical spin textures that can form in the same material. The skyrmion size and the period of the helix are generally considered as being determined, in large part, by the ratio of the magnitude of the Heisenberg to that of the Dzyaloshinskii-Moriya exchange interaction. In this work, it is shown by real‐space magnetic imaging that the helix period λ and the size of the antiskyrmion daSk in the D2d compound Mn1.4PtSn can be systematically tuned ...
We report the most precise observations to date concerning the spin structure of magnetic skyrmions ...
A stable skyrmion, representing the smallest realizablemagnetic texture, could be an ideal element f...
Recently, magnetic antiskyrmions were discovered in Mn1.4Pt0.9Pd0.1Sn, an inverse tetragonal Heusler...
Skyrmions and antiskyrmions are magnetic nano-objects with distinct chiral, noncollinear spin textur...
Chiral spin textures are of considerable interest for applications in spintronics. It has recently b...
Magnetic anti-skyrmions are one of several chiral spin textures that are of great current interest b...
Magnetic skyrmions are topologically stable, vortex-like objects surrounded by chiral boundaries tha...
Skyrmionic materials hold the potential for future information technologies, such as racetrack memor...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Skyrmions in non-centrosymmetric magnets are vortex-like spin arrangements, viewed as potential cand...
Heusler compounds having D2d crystal symmetry gained much attention recently due to the stabilizatio...
Skyrmions in ultrathin ferromagnetic metal (FM)/heavy metal (HM) multilayer systems produced by conv...
Skyrmions, topologically protected vortex-like nanometric spin textures in magnets, have been attrac...
A stable skyrmion, representing the smallest realizable magnetic texture, could be an ideal element ...
Magnetic skyrmions and antiskyrmions are observed in material classes with different crystal symmetr...
We report the most precise observations to date concerning the spin structure of magnetic skyrmions ...
A stable skyrmion, representing the smallest realizablemagnetic texture, could be an ideal element f...
Recently, magnetic antiskyrmions were discovered in Mn1.4Pt0.9Pd0.1Sn, an inverse tetragonal Heusler...
Skyrmions and antiskyrmions are magnetic nano-objects with distinct chiral, noncollinear spin textur...
Chiral spin textures are of considerable interest for applications in spintronics. It has recently b...
Magnetic anti-skyrmions are one of several chiral spin textures that are of great current interest b...
Magnetic skyrmions are topologically stable, vortex-like objects surrounded by chiral boundaries tha...
Skyrmionic materials hold the potential for future information technologies, such as racetrack memor...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Skyrmions in non-centrosymmetric magnets are vortex-like spin arrangements, viewed as potential cand...
Heusler compounds having D2d crystal symmetry gained much attention recently due to the stabilizatio...
Skyrmions in ultrathin ferromagnetic metal (FM)/heavy metal (HM) multilayer systems produced by conv...
Skyrmions, topologically protected vortex-like nanometric spin textures in magnets, have been attrac...
A stable skyrmion, representing the smallest realizable magnetic texture, could be an ideal element ...
Magnetic skyrmions and antiskyrmions are observed in material classes with different crystal symmetr...
We report the most precise observations to date concerning the spin structure of magnetic skyrmions ...
A stable skyrmion, representing the smallest realizablemagnetic texture, could be an ideal element f...
Recently, magnetic antiskyrmions were discovered in Mn1.4Pt0.9Pd0.1Sn, an inverse tetragonal Heusler...