The formation of topological spin textures at the nanoscale has a significant impact on the long-range order and dynamical response of magnetic materials. We study the relaxation mechanisms at the conical-To-helical phase transition in the chiral magnet FeGe. By combining macroscopic ac susceptibility measurement, surface-sensitive magnetic force microscopy, and micromagnetic simulations, we demonstrate how the motion of magnetic topological defects, here edge dislocations, impacts the local formation of a stable helimagnetic spin structure. Although the simulations show that the edge dislocations can move with a velocity up to 100 m/s through the helimagnetic background, their dynamics are observed to disturb the magnetic order on the time...
In thin magnetic films with perpendicular magnetic anisotropy, a periodic "up-down" stripe-domain st...
The diversity of three-dimensional magnetic states in a FeGe nanocylinder is studied using micromagn...
Domain walls naturally arise whenever a symmetry is spontaneously broken. They interconnect regions ...
The formation of topological spin textures at the nanoscale has a significant impact on the long-ran...
Chiral magnetic interactions induce complex spin textures including helical and conical spin spirals...
Chiral magnetic interactions induce complex spin textures including helical and conical spin spirals...
Perturbations in magnetically or electrically ordered materials can form stable defectsthat cannot b...
Topologically nontrivial spin textures, such as skyrmions and dislocations, display emergent electro...
Theoretical analysis and Lorentz transmission electron microscopy (LTEM) investigations in an FeGe w...
Whereas theoretical investigations have revealed the significant influence of magnetic surface and e...
Chiral magnets such as MnSi, FeGe or Cu2OSeO3 exhibit a non-centrosymmetric lattice structure which ...
Isotropic helimagnets are known to host a diverse range of chiral magnetic states. In 2016, Rybakov ...
The magnetic stripe domains observed in the vicinity of the spin reorientation transition is a great...
International audienceWe have studied the MnGe chiral magnet below T N = 170 K, by magnetic measurem...
In thin magnetic films with perpendicular magnetic anisotropy, a periodic "up-down" stripe-domain st...
The diversity of three-dimensional magnetic states in a FeGe nanocylinder is studied using micromagn...
Domain walls naturally arise whenever a symmetry is spontaneously broken. They interconnect regions ...
The formation of topological spin textures at the nanoscale has a significant impact on the long-ran...
Chiral magnetic interactions induce complex spin textures including helical and conical spin spirals...
Chiral magnetic interactions induce complex spin textures including helical and conical spin spirals...
Perturbations in magnetically or electrically ordered materials can form stable defectsthat cannot b...
Topologically nontrivial spin textures, such as skyrmions and dislocations, display emergent electro...
Theoretical analysis and Lorentz transmission electron microscopy (LTEM) investigations in an FeGe w...
Whereas theoretical investigations have revealed the significant influence of magnetic surface and e...
Chiral magnets such as MnSi, FeGe or Cu2OSeO3 exhibit a non-centrosymmetric lattice structure which ...
Isotropic helimagnets are known to host a diverse range of chiral magnetic states. In 2016, Rybakov ...
The magnetic stripe domains observed in the vicinity of the spin reorientation transition is a great...
International audienceWe have studied the MnGe chiral magnet below T N = 170 K, by magnetic measurem...
In thin magnetic films with perpendicular magnetic anisotropy, a periodic "up-down" stripe-domain st...
The diversity of three-dimensional magnetic states in a FeGe nanocylinder is studied using micromagn...
Domain walls naturally arise whenever a symmetry is spontaneously broken. They interconnect regions ...