Magnetic skyrmions and antiskyrmions are observed in material classes with different crystal symmetries, where the Dzyaloshinskii–Moriya interaction stabilizes either skyrmions or antiskyrmions. Here, we report the observation of two distinct peaks in the topological Hall effect in a thin film of Mn2RhSn. Utilizing a phenomenological approach and electronic transport simulations, these topological Hall effect features are attributed to be direct signatures of two topologically distinct chiral spin objects, namely, skyrmions and antiskyrmions. Topological Hall effect studies allow us to determine the existence of these two topological objects over a wide range of temperature and magnetic fields. In particular, we find skyrmions to be stable ...
Magnetic skyrmions are topologically stable, vortex-like objects surrounded by chiral boundaries tha...
We have investigated the magnetic and charge transport properties of single crystals of the Nowotny ...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...
Magnetic skyrmions and antiskyrmions are observed in material classes with different crystal symmetr...
Heusler compounds having D2d crystal symmetry gained much attention recently due to the stabilizatio...
Heusler compounds having D 2d crystal symmetry gained much attention recently due to the stabilizati...
Heusler compounds having D 2d crystal symmetry gained much attention recently due to the stabilizati...
Heusler compounds having D 2d crystal symmetry gained much attention recently due to the stabilizati...
Skyrmionic materials hold the potential for future information technologies, such as racetrack memor...
Spin chirality in metallic materials with noncoplanar magnetic order can give rise to a Berry phase ...
Heusler compounds having D-2d crystal symmetry gained much attention recently due to the stabilizati...
The topological Hall effect is used extensively to study chiral spin textures in various materials. ...
Magnetic anti-skyrmions are one of several chiral spin textures that are of great current interest b...
Magnetic skyrmions are small whirling topological defects in a texture magnetization state. Their st...
Noncollinear antiferromagnets with a D019 (spacegroup=194, P63/mmc) hexagonal structure have garnere...
Magnetic skyrmions are topologically stable, vortex-like objects surrounded by chiral boundaries tha...
We have investigated the magnetic and charge transport properties of single crystals of the Nowotny ...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...
Magnetic skyrmions and antiskyrmions are observed in material classes with different crystal symmetr...
Heusler compounds having D2d crystal symmetry gained much attention recently due to the stabilizatio...
Heusler compounds having D 2d crystal symmetry gained much attention recently due to the stabilizati...
Heusler compounds having D 2d crystal symmetry gained much attention recently due to the stabilizati...
Heusler compounds having D 2d crystal symmetry gained much attention recently due to the stabilizati...
Skyrmionic materials hold the potential for future information technologies, such as racetrack memor...
Spin chirality in metallic materials with noncoplanar magnetic order can give rise to a Berry phase ...
Heusler compounds having D-2d crystal symmetry gained much attention recently due to the stabilizati...
The topological Hall effect is used extensively to study chiral spin textures in various materials. ...
Magnetic anti-skyrmions are one of several chiral spin textures that are of great current interest b...
Magnetic skyrmions are small whirling topological defects in a texture magnetization state. Their st...
Noncollinear antiferromagnets with a D019 (spacegroup=194, P63/mmc) hexagonal structure have garnere...
Magnetic skyrmions are topologically stable, vortex-like objects surrounded by chiral boundaries tha...
We have investigated the magnetic and charge transport properties of single crystals of the Nowotny ...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...