Chiral spin textures are of considerable interest for applications in spintronics. It has recently been shown that magnetic materials with (D2d) symmetry can sustain several distinct spin textures. Here, we show, using Lorentz transmission electron microscopy, that single and double chains of antiskyrmions can be generated at room temperature in nanostripes less than 0.5 mu m in width formed from the D-2d Heusler compound Mn1.4Pt0.9Pd0.1Sn. Typically, truncated helical spin textures are formed in low magnetic fields, whose edges are terminated by half antiskyrmions. These evolve into chains of antiskyrmions with increasing magnetic field. Single chains of these objects are located in the middle of the nanostripes even when the stripes are m...
Magnetic skyrmion, a topological magnetic domain with complex non-coplanar spin texture, appears a d...
Chirality plays a major role in nature, from particle physics to DNA, and its control is much sought...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Skyrmions and antiskyrmions are magnetic nano‐objects with distinct chiral, noncollinear spin textur...
Skyrmions and antiskyrmions are magnetic nano-objects with distinct chiral, noncollinear spin textur...
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...
Skyrmions, topologically protected vortex-like nanometric spin textures in magnets, have been attrac...
Magnetic skyrmions and antiskyrmions are observed in material classes with different crystal symmetr...
Magnetic skyrmions are topologically wound nanoscale textures of spins whose ambient stability and e...
Heusler compounds having D2d crystal symmetry gained much attention recently due to the stabilizatio...
Skyrmions and antiskyrmions are distinct topological chiral spin textures that have been observed in...
Skyrmionic materials hold the potential for future information technologies, such as racetrack memor...
Controlled creation of stable chiral spin textures is required to use them as an energy-efficient in...
Topologically non-trivial structures such as magnetic skyrmions are nanometric spin textures of outs...
Magnetic skyrmion, a topological magnetic domain with complex non-coplanar spin texture, appears a d...
Chirality plays a major role in nature, from particle physics to DNA, and its control is much sought...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Skyrmions and antiskyrmions are magnetic nano‐objects with distinct chiral, noncollinear spin textur...
Skyrmions and antiskyrmions are magnetic nano-objects with distinct chiral, noncollinear spin textur...
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...
Skyrmions, topologically protected vortex-like nanometric spin textures in magnets, have been attrac...
Magnetic skyrmions and antiskyrmions are observed in material classes with different crystal symmetr...
Magnetic skyrmions are topologically wound nanoscale textures of spins whose ambient stability and e...
Heusler compounds having D2d crystal symmetry gained much attention recently due to the stabilizatio...
Skyrmions and antiskyrmions are distinct topological chiral spin textures that have been observed in...
Skyrmionic materials hold the potential for future information technologies, such as racetrack memor...
Controlled creation of stable chiral spin textures is required to use them as an energy-efficient in...
Topologically non-trivial structures such as magnetic skyrmions are nanometric spin textures of outs...
Magnetic skyrmion, a topological magnetic domain with complex non-coplanar spin texture, appears a d...
Chirality plays a major role in nature, from particle physics to DNA, and its control is much sought...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...