Topological spin textures such as skyrmions hold high potential for use as magnetically active elements in diverse near-future applications. While skyrmions in metallic multilayers attract great attention in this context, unleashing the myriad potential of skyrmions for various applications requires the discovery and customization of alternative host system paradigms. Here, we developed and applied a chemical method to synthesize octahedral particles of the chiral insulating skyrmion host Cu2OSeO3 with both narrow size distribution and tailored dimensions approaching the nanoscale. Combining magnetometry and neutron scattering experiments with micromagnetic simulations, we show that the bulk phase diagram of Cu2OSeO3 changes dramatically be...
Magnetic skyrmions are vortex-like spin textures, which are usually treated as two-dimensional objec...
Magnetic skyrmions in chiral magnets are nanoscale, topologically protected magnetization swirls tha...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic materials can host skyrmions, which are topologically non-trivial spin textures. In chiral ...
Abstract Skyrmions in confined geometries have been a subject of increasing interest due to the differ...
Magnetic skyrmions in chiral magnets are nanoscale, topologically-protected magnetization swirls tha...
The Skyrme-particle, the skyrmion, was introduced over half a century ago in the context of dense nu...
The Skyrme-particle, the skyrmion, was introduced over half a century ago in the context of dense nu...
The recent discovery of magnetic skyrmion lattices initiated a surge of interest in the scientific c...
It is commonly assumed that surfaces modify the properties of stable materials within the top few at...
The discovery of magnetic skyrmions provides a promising pathway for developing functional spintroni...
Skyrmions are nanometric spin whirls that can be stabilized in magnets lacking inversion symmetry. T...
We study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
We report the observation of a skyrmion lattice in the chiral multiferroic insulator Cu2OSeO3 using ...
Magnetic skyrmions are nanosized topologically protected spin textures with particlelike properties....
Magnetic skyrmions are vortex-like spin textures, which are usually treated as two-dimensional objec...
Magnetic skyrmions in chiral magnets are nanoscale, topologically protected magnetization swirls tha...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic materials can host skyrmions, which are topologically non-trivial spin textures. In chiral ...
Abstract Skyrmions in confined geometries have been a subject of increasing interest due to the differ...
Magnetic skyrmions in chiral magnets are nanoscale, topologically-protected magnetization swirls tha...
The Skyrme-particle, the skyrmion, was introduced over half a century ago in the context of dense nu...
The Skyrme-particle, the skyrmion, was introduced over half a century ago in the context of dense nu...
The recent discovery of magnetic skyrmion lattices initiated a surge of interest in the scientific c...
It is commonly assumed that surfaces modify the properties of stable materials within the top few at...
The discovery of magnetic skyrmions provides a promising pathway for developing functional spintroni...
Skyrmions are nanometric spin whirls that can be stabilized in magnets lacking inversion symmetry. T...
We study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
We report the observation of a skyrmion lattice in the chiral multiferroic insulator Cu2OSeO3 using ...
Magnetic skyrmions are nanosized topologically protected spin textures with particlelike properties....
Magnetic skyrmions are vortex-like spin textures, which are usually treated as two-dimensional objec...
Magnetic skyrmions in chiral magnets are nanoscale, topologically protected magnetization swirls tha...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...