Magnetic skyrmions are particle-like, topologically protected magnetisation entities that are promising candidates as information carriers in racetrack memory. The transport of skyrmions in a shift-register-like fashion is crucial for their embodiment in practical devices. Here, we demonstrate that chiral skyrmions in Cu2OSeO3 can be effectively manipulated under the influence of a magnetic field gradient. In a radial field gradient, skyrmions were found to rotate collectively, following a given velocity–radius relationship. As a result of this relationship, and in competition with the elastic properties of the skyrmion lattice, the rotating ensemble disintegrates into a shell-like structure of discrete circular racetracks. Upon reversing t...
Magnetic skyrmions are topologically stable spin textures that are found in materials with Dzyaloshi...
International audienceMagnetic skyrmions are chiral spin textures which hold great promise as nanosc...
Despite the inefficiencies associated with current-induced spin torques, they remain the predominant...
Magnetic skyrmions are particle-like, topologically protected magnetisation entities that are promis...
Magnetic skyrmions are particle-like, topologically protected magnetization entities that are promis...
Spontaneously emergent chirality is an issue of fundamental importance across the natural sciences. ...
Magnetic skyrmions are vortex-like, swirls of magnetisation whose topological protection and particl...
The discovery of magnetic skyrmions in ultrathin heterostructures has led to great interest in possi...
Magnetic materials can host skyrmions, which are topologically non-trivial spin textures. In chiral ...
Magnetic skyrmions are particle-like magnetization configurations which can be found in materials wi...
The chiral magnet Cu2OSeO3 hosts a Skyrmion lattice that may be equivalently described as a superpos...
International audienceMagnetic skyrmions are nanoscale windings of the spin configuration that hold ...
Magnetic skyrmions are attracting a growing interest from both a fundamental and a technological poi...
Magnetic skyrmions are attracting a growing interest from both a fundamental and a technological poi...
Magnetic skyrmions, as a whirling spin texture with axisymmetry, cannot be propelled by a uniform ma...
Magnetic skyrmions are topologically stable spin textures that are found in materials with Dzyaloshi...
International audienceMagnetic skyrmions are chiral spin textures which hold great promise as nanosc...
Despite the inefficiencies associated with current-induced spin torques, they remain the predominant...
Magnetic skyrmions are particle-like, topologically protected magnetisation entities that are promis...
Magnetic skyrmions are particle-like, topologically protected magnetization entities that are promis...
Spontaneously emergent chirality is an issue of fundamental importance across the natural sciences. ...
Magnetic skyrmions are vortex-like, swirls of magnetisation whose topological protection and particl...
The discovery of magnetic skyrmions in ultrathin heterostructures has led to great interest in possi...
Magnetic materials can host skyrmions, which are topologically non-trivial spin textures. In chiral ...
Magnetic skyrmions are particle-like magnetization configurations which can be found in materials wi...
The chiral magnet Cu2OSeO3 hosts a Skyrmion lattice that may be equivalently described as a superpos...
International audienceMagnetic skyrmions are nanoscale windings of the spin configuration that hold ...
Magnetic skyrmions are attracting a growing interest from both a fundamental and a technological poi...
Magnetic skyrmions are attracting a growing interest from both a fundamental and a technological poi...
Magnetic skyrmions, as a whirling spin texture with axisymmetry, cannot be propelled by a uniform ma...
Magnetic skyrmions are topologically stable spin textures that are found in materials with Dzyaloshi...
International audienceMagnetic skyrmions are chiral spin textures which hold great promise as nanosc...
Despite the inefficiencies associated with current-induced spin torques, they remain the predominant...