Magnetic nanoparticles offer a broad spectrum of magnetization reversal processes and respective magnetic states, such as onion, horseshoe, or vortex states as well as various states including domain walls. These states can be correlated with stable intermediate states at remanence, enabling new quaternary memory devices storing two bits in one particle. The stability of these intermediated states was tested with respect to shape modifications, variations in the anisotropy axes, and rotations and fluctuations of the external magnetic field. In our micromagnetic simulations, 6 different stable intermediate states were observed at vanishing magnetic field in addition to the remanence state. The angular region of approx. 5°–12° between nanorin...
[[abstract]]Three different stable magnetization configurations of soft-type nanostructured permallo...
We studied the magnetoresistance of symmetric cobalt nanorings with nanowires attached at diametrica...
PosterUnderstanding reversal mechanisms and dynamics of magnetic nanosystems is one of the leading t...
We present a systematic investigation of the magnetic properties and magnetization reversal processe...
Magnetic nanorings are the object of increasing scientific interest because they possess the vortex ...
This thesis discusses experimental research and theoretical analysis on exploring the physics and te...
This thesis discusses experimental research and theoretical analysis on exploring the physics and te...
We study the evolution of the magnetic field-induced switching between the stable domain configurati...
The investigation of the magnetization reversal process in magnetic nanostructures represents an int...
Magnetic rings at the mesoscopic scale exhibit new spin configuration states and switching behavior,...
Discovering how the magnetization reversal process is governed by the magnetic anisotropy in magneti...
Switching behavior in ferromagnetic nanostructures is often determined by the formation and annihila...
One method to increase bit density in magnetic memory devices is to use larger structures that have ...
Transmission electron microscopy and micromagnetic modeling have been used to study magnetization pr...
[[abstract]]Three different stable magnetization configurations of soft-type nanostructured permallo...
[[abstract]]Three different stable magnetization configurations of soft-type nanostructured permallo...
We studied the magnetoresistance of symmetric cobalt nanorings with nanowires attached at diametrica...
PosterUnderstanding reversal mechanisms and dynamics of magnetic nanosystems is one of the leading t...
We present a systematic investigation of the magnetic properties and magnetization reversal processe...
Magnetic nanorings are the object of increasing scientific interest because they possess the vortex ...
This thesis discusses experimental research and theoretical analysis on exploring the physics and te...
This thesis discusses experimental research and theoretical analysis on exploring the physics and te...
We study the evolution of the magnetic field-induced switching between the stable domain configurati...
The investigation of the magnetization reversal process in magnetic nanostructures represents an int...
Magnetic rings at the mesoscopic scale exhibit new spin configuration states and switching behavior,...
Discovering how the magnetization reversal process is governed by the magnetic anisotropy in magneti...
Switching behavior in ferromagnetic nanostructures is often determined by the formation and annihila...
One method to increase bit density in magnetic memory devices is to use larger structures that have ...
Transmission electron microscopy and micromagnetic modeling have been used to study magnetization pr...
[[abstract]]Three different stable magnetization configurations of soft-type nanostructured permallo...
[[abstract]]Three different stable magnetization configurations of soft-type nanostructured permallo...
We studied the magnetoresistance of symmetric cobalt nanorings with nanowires attached at diametrica...
PosterUnderstanding reversal mechanisms and dynamics of magnetic nanosystems is one of the leading t...