In this work, we explore the stability of magnetic skyrmions confined in a disk geometry by analyzing how to switch a skyrmionic state in a circular disk into a uniformly magnetized state when applying an external magnetic field. The technologically highly relevant energy barrier between the skyrmion state and the uniformly magnetized state is a key parameter needed for lifetime calculations. In an infinite sample, this relates to the out-of-plane rupture field against the skyrmion-core direction, while in confined geometries the topological charge can also be changed by interactions with the sample edges. We find that annihilating a skyrmion with an applied field in the direction of the core magnetization—we call this expulsion—the energy ...
Localized, noncollinear spin textures such as magnetic skyrmions may become the basis for digital te...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
The creation and annihilation of magnetic skyrmions are mediated by three-dimensional topological de...
peer reviewedIn this combined experimental and theoretical work, we report on the evolution of the s...
Magnetic skyrmions are topological magnetic spin structures exhibiting particle-like behaviour. They...
Magnetic skyrmions are topologically protected whirls that decay through singular magnetic configura...
Magnetic skyrmions are topologically protected whirls that decay through singular magnetic configura...
Magnetic skyrmions are topologically protected whirls that decay through singular magnetic configura...
We study, in the absence of a magnetic field, the stability of skyrmions in a disk-shaped ferromagne...
The skyrmion racetrack is a promising concept for future information technology. There, binary bits ...
We compute annihilation rates of metastable magnetic skyrmions using a form of Langer's theory in th...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Experiments with chiral magnets may hold the key to a better understanding of fundamental aspects of...
Magnetic skyrmions are two-dimensional, localized, particle-like, topologically non-trivial magnetic...
Localized, noncollinear spin textures such as magnetic skyrmions may become the basis for digital te...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
The creation and annihilation of magnetic skyrmions are mediated by three-dimensional topological de...
peer reviewedIn this combined experimental and theoretical work, we report on the evolution of the s...
Magnetic skyrmions are topological magnetic spin structures exhibiting particle-like behaviour. They...
Magnetic skyrmions are topologically protected whirls that decay through singular magnetic configura...
Magnetic skyrmions are topologically protected whirls that decay through singular magnetic configura...
Magnetic skyrmions are topologically protected whirls that decay through singular magnetic configura...
We study, in the absence of a magnetic field, the stability of skyrmions in a disk-shaped ferromagne...
The skyrmion racetrack is a promising concept for future information technology. There, binary bits ...
We compute annihilation rates of metastable magnetic skyrmions using a form of Langer's theory in th...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Experiments with chiral magnets may hold the key to a better understanding of fundamental aspects of...
Magnetic skyrmions are two-dimensional, localized, particle-like, topologically non-trivial magnetic...
Localized, noncollinear spin textures such as magnetic skyrmions may become the basis for digital te...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...