Novel magnetic ground states have been stabilized in two-dimensional (2D) magnets such as skyrmions, with the potential next-generation information technology. Here, we report the experimental observation of a Néel-type skyrmion lattice at room temperature in a single-phase, layered 2D magnet, specifically a 50% Co-doped Fe5GeTe2 (FCGT) system. The thickness-dependent magnetic domain size follows Kittel's law. The static spin textures and spin dynamics in FCGT nanoflakes were studied by Lorentz electron microscopy, variable-temperature magnetic force microscopy, micromagnetic simulations, and magnetotransport measurements. Current-induced skyrmion lattice motion was observed at room temperature, with a threshold current density, jth = 1 × 1...
Skyrmions have been well studied in chiral magnets and magnetic thin films due to their potential ap...
ntense research interest in magnetic skyrmions is presently driving the development of new fundament...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...
Novel magnetic ground states have been stabilized in two-dimensional (2D) magnets such as skyrmions,...
The role of the crystal lattice, temperature and magnetic field for the spin structure formation in ...
Magnetic skyrmions are nanoscale topological spin structures offering great promise for next-generat...
Magnetic skyrmions are nanoscale topological spin structures offering great promise for next-generat...
Magnetic materials offer an opportunity to overcome the scalability and energy consumption limits af...
The discovery of two-dimensional magnets has initiated a new field of research, exploring both funda...
The role of the crystal lattice, temperature and magnetic field for the spin structure formation in ...
Magnetic skyrmions are topological spin textures, which usually exist in noncentrosymmetric material...
Magnetic skyrmions are topologically protected spin textures that exhibit fascinating physical behav...
The discovery of magnetic skyrmions provides a promising pathway for developing functional spintroni...
The emergence of long-range magnetic order in noncentrosymmetric compounds has stimulated interest i...
Magnetic skyrmions are topologically protected spin textures that exhibit fascinating physical behav...
Skyrmions have been well studied in chiral magnets and magnetic thin films due to their potential ap...
ntense research interest in magnetic skyrmions is presently driving the development of new fundament...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...
Novel magnetic ground states have been stabilized in two-dimensional (2D) magnets such as skyrmions,...
The role of the crystal lattice, temperature and magnetic field for the spin structure formation in ...
Magnetic skyrmions are nanoscale topological spin structures offering great promise for next-generat...
Magnetic skyrmions are nanoscale topological spin structures offering great promise for next-generat...
Magnetic materials offer an opportunity to overcome the scalability and energy consumption limits af...
The discovery of two-dimensional magnets has initiated a new field of research, exploring both funda...
The role of the crystal lattice, temperature and magnetic field for the spin structure formation in ...
Magnetic skyrmions are topological spin textures, which usually exist in noncentrosymmetric material...
Magnetic skyrmions are topologically protected spin textures that exhibit fascinating physical behav...
The discovery of magnetic skyrmions provides a promising pathway for developing functional spintroni...
The emergence of long-range magnetic order in noncentrosymmetric compounds has stimulated interest i...
Magnetic skyrmions are topologically protected spin textures that exhibit fascinating physical behav...
Skyrmions have been well studied in chiral magnets and magnetic thin films due to their potential ap...
ntense research interest in magnetic skyrmions is presently driving the development of new fundament...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...