Skyrmion-containing devices have been proposed as a promising solution for low energy data storage. These devices include racetrack or logic structures and require skyrmions to be confined in regions with dimensions comparable to the size of a single skyrmion. Here we examine Bloch skyrmions in FeGe device shapes using Lorentz transmission electron microscopy (LTEM) to reveal the consequences of skyrmion confinement in a device-like structure. Dumbbell-shaped elements were created by focused ion beam (FIB) milling to provide regions where single skyrmions are confined adjacent to areas containing a skyrmion lattice. Simple block shapes of equivalent dimensions were also prepared to allow a direct comparison with skyrmion formation in a less...
Magnetic skyrmions are topologically nontrivial particles with a potential application as informatio...
Magnetic skyrmions, localized swirling spin textures with topologically protection, are of particula...
Magnetic skyrmion is an exotic vortex-like magnetic structure stabilized by the Dzyaloshinskii-Moriy...
Skyrmion-based devices have been proposed as a promising solution for low-energy data storage. These...
Skyrmion-based devices have been proposed as a promising solution for low-energy data storage. These...
Skyrmion-based devices have been proposed as a promising solution for low-energy data storage. These...
ntense research interest in magnetic skyrmions is presently driving the development of new fundament...
The ability to controllably manipulate magnetic skyrmions, small magnetic whirls with particle-like ...
The need for denser storage devices calls for new materials and nanostructures capable of confining ...
The need for denser storage devices calls for new materials and nanostructures capable of confining ...
Stable confinement of elemental magnetic nanostructures, such as a single magnetic domain, is fundam...
Stable confinement of elemental magnetic nanostructures, such as a single magnetic domain, is fundam...
Dataset for "Confinement of Skyrmions in Nanoscale FeGe Device Structures" This dataset comprises o...
Recent studies have demonstrated that skyrmionic states can be the ground state in thin-film FeGe di...
Department of Materials Science and EngineeringMagnetic skyrmions are topologically stable spin conf...
Magnetic skyrmions are topologically nontrivial particles with a potential application as informatio...
Magnetic skyrmions, localized swirling spin textures with topologically protection, are of particula...
Magnetic skyrmion is an exotic vortex-like magnetic structure stabilized by the Dzyaloshinskii-Moriy...
Skyrmion-based devices have been proposed as a promising solution for low-energy data storage. These...
Skyrmion-based devices have been proposed as a promising solution for low-energy data storage. These...
Skyrmion-based devices have been proposed as a promising solution for low-energy data storage. These...
ntense research interest in magnetic skyrmions is presently driving the development of new fundament...
The ability to controllably manipulate magnetic skyrmions, small magnetic whirls with particle-like ...
The need for denser storage devices calls for new materials and nanostructures capable of confining ...
The need for denser storage devices calls for new materials and nanostructures capable of confining ...
Stable confinement of elemental magnetic nanostructures, such as a single magnetic domain, is fundam...
Stable confinement of elemental magnetic nanostructures, such as a single magnetic domain, is fundam...
Dataset for "Confinement of Skyrmions in Nanoscale FeGe Device Structures" This dataset comprises o...
Recent studies have demonstrated that skyrmionic states can be the ground state in thin-film FeGe di...
Department of Materials Science and EngineeringMagnetic skyrmions are topologically stable spin conf...
Magnetic skyrmions are topologically nontrivial particles with a potential application as informatio...
Magnetic skyrmions, localized swirling spin textures with topologically protection, are of particula...
Magnetic skyrmion is an exotic vortex-like magnetic structure stabilized by the Dzyaloshinskii-Moriy...