The effect of the Dzyaloshinskii–Moriya (DM) interaction on the vortex in magnetic microdisk was investigated by micro-magnetic simulation based on the Landau–Lifshitz–Gilbert equation. Our results show that the DM interaction modifies the size of the vortex core, and also induces an out-of-plane magnetization component at the edge and inside the disk. The DM interaction can destabilizes one vortex handedness, generate a bias field to the vortex core and couple the vortex polarity and chirality. This DM-interaction-induced coupling can therefore provide a new way to control vortex polarity and chirality
This work presents an experimental investigation of the switching behavior of single Co- and perma...
International audienceSince the early 1960’s, the discovery of Dzyaloshinskii–Moriya interaction (DM...
L'interaction Dzyaloshinskii-Moriya dans les couches magnétiques ultraminces est à l'origine de paro...
In transition metal oxides, magnetic dipole-dipole (DD) and chiral Dzyaloshinsky-Moriya (DM) interac...
We have studied magnetic vortex oscillations in circular LSMO (lanthanum strontium manganite) disks ...
The diploma thesis is concerned with switching of vortex circulation in magnetic nanodisks. The resu...
A type of vortex spin texture with skyrmionic core and a series of circle spin stripes were obtained...
This is a report for the study of magnetization reversal and control of the vortex chirality in nano...
Geometric curvature of nanoscale magnetic shells brings about curvature-induced anisotropy and Dzyal...
The effects of Dzyaloshinskii-Moriya interaction (DMI) on the ferromagnetic resonance response are i...
It is well known that magnetic domains in nanodisks can be used as storage units for computer memory...
Magnetic nanostructures in the form of a sandwich consisting of two permalloy (Py) disks with diamet...
In magnetic nanostructures reduced dimensionality and complex interactions on surfaces and interface...
Research on topologically protected chiral magnetic structures such as magnetic domain walls (DWs) a...
We present an analytical description of the energy density of chiral magnetic domain walls (DWs) tha...
This work presents an experimental investigation of the switching behavior of single Co- and perma...
International audienceSince the early 1960’s, the discovery of Dzyaloshinskii–Moriya interaction (DM...
L'interaction Dzyaloshinskii-Moriya dans les couches magnétiques ultraminces est à l'origine de paro...
In transition metal oxides, magnetic dipole-dipole (DD) and chiral Dzyaloshinsky-Moriya (DM) interac...
We have studied magnetic vortex oscillations in circular LSMO (lanthanum strontium manganite) disks ...
The diploma thesis is concerned with switching of vortex circulation in magnetic nanodisks. The resu...
A type of vortex spin texture with skyrmionic core and a series of circle spin stripes were obtained...
This is a report for the study of magnetization reversal and control of the vortex chirality in nano...
Geometric curvature of nanoscale magnetic shells brings about curvature-induced anisotropy and Dzyal...
The effects of Dzyaloshinskii-Moriya interaction (DMI) on the ferromagnetic resonance response are i...
It is well known that magnetic domains in nanodisks can be used as storage units for computer memory...
Magnetic nanostructures in the form of a sandwich consisting of two permalloy (Py) disks with diamet...
In magnetic nanostructures reduced dimensionality and complex interactions on surfaces and interface...
Research on topologically protected chiral magnetic structures such as magnetic domain walls (DWs) a...
We present an analytical description of the energy density of chiral magnetic domain walls (DWs) tha...
This work presents an experimental investigation of the switching behavior of single Co- and perma...
International audienceSince the early 1960’s, the discovery of Dzyaloshinskii–Moriya interaction (DM...
L'interaction Dzyaloshinskii-Moriya dans les couches magnétiques ultraminces est à l'origine de paro...