A Bloch point (BP) is a topological defect in a ferromagnet at which the local magnetization vanishes. With the difficulty of generating a stable BP in magnetic nanostructures, the intrinsic nature of a BP and its dynamic behaviour has not been verified experimentally. We report a realization of steady-state BPs embedded in deformed magnetic vortex cores in asymmetrically shaped Ni80Fe20 nanodisks. Time-resolved nanoscale magnetic X-ray imaging combined with micromagnetic simulation shows detailed dynamic character of BPs, revealing rigid and limited lateral movements under magnetic field pulses as well as its crucial role in vortex-core dynamics. Direct visualizations of magnetic structures disclose the unique dynamical feature of a BP as ...
Magnetic nanostructures in the form of a sandwich consisting of two permalloy (Py) disks with diamet...
Vortices are fundamental magnetic topological structures characterized by a curling magnetization ar...
Chiral magnetic interactions induce complex spin textures including helical and conical spin spirals...
A Bloch point (BP) is a topological defect in a ferromagnet at which the local magnetization vanishe...
A Bloch point is a magnetic singularity in ferromagnetic materials, where the local magnetization va...
A Bloch point (BP) is, as far as we know, the only magnetization singularity in a ferromagnet at whi...
In a ferromagnetic material, a Bloch point is a zero-dimensional singularity. It plays an important ...
Spin structures including domain walls and magnetic vortices have attracted enormous interests not o...
In a confined ferromagnetic disk, the magnetic vortex structure, one of magnetic topological texture...
Recently, it was demonstrated that confined helimagnetic nanostructures, composed of grains of diffe...
In nanopatterned thin film of soft-ferromagnetic materials, a flux-closure domain structure such as ...
The prediction of magnetic skyrmions being used to change the way we store and process data has led ...
Dynamic switching of the vortex circulation in magnetic nanodisks by fast-rising magnetic field puls...
Ordered magnetic materials exhibit intriguing textures and defects that are stable for the topologic...
Switching of magnetic vortex cores involves a topological transition characterized by the presence o...
Magnetic nanostructures in the form of a sandwich consisting of two permalloy (Py) disks with diamet...
Vortices are fundamental magnetic topological structures characterized by a curling magnetization ar...
Chiral magnetic interactions induce complex spin textures including helical and conical spin spirals...
A Bloch point (BP) is a topological defect in a ferromagnet at which the local magnetization vanishe...
A Bloch point is a magnetic singularity in ferromagnetic materials, where the local magnetization va...
A Bloch point (BP) is, as far as we know, the only magnetization singularity in a ferromagnet at whi...
In a ferromagnetic material, a Bloch point is a zero-dimensional singularity. It plays an important ...
Spin structures including domain walls and magnetic vortices have attracted enormous interests not o...
In a confined ferromagnetic disk, the magnetic vortex structure, one of magnetic topological texture...
Recently, it was demonstrated that confined helimagnetic nanostructures, composed of grains of diffe...
In nanopatterned thin film of soft-ferromagnetic materials, a flux-closure domain structure such as ...
The prediction of magnetic skyrmions being used to change the way we store and process data has led ...
Dynamic switching of the vortex circulation in magnetic nanodisks by fast-rising magnetic field puls...
Ordered magnetic materials exhibit intriguing textures and defects that are stable for the topologic...
Switching of magnetic vortex cores involves a topological transition characterized by the presence o...
Magnetic nanostructures in the form of a sandwich consisting of two permalloy (Py) disks with diamet...
Vortices are fundamental magnetic topological structures characterized by a curling magnetization ar...
Chiral magnetic interactions induce complex spin textures including helical and conical spin spirals...