We perform magnetoresistance (MR) and magneto-optical Kerr effect (MOKE) measurements to experimentally track magnetic domain wall (DW) pinning/depinning process in L-shaped Permalloy nanostructures of different geometries (i.e., square/round corner and absence/presence of circular disks) with widths in the range 75-400 nm. With MR and MOKE measurements being in a good quantitative agreement, we demonstrate that the field interval between pinning and depinning events increases with reduction of the nanowire width. In addition, the DW pinning/depinning behavior is geometry dependent, where round corners break the symmetry in the device orientation with respect to the field. The interpretation of experimental results is supported by micromagn...
Stochastic phenomena in magnetic nanowires based on domain wall (DW) motion is scientifically import...
We have performed combined electrical and magneto-optical Kerr effect measurements on Permalloy nano...
Controlled domain wall motion and pinning in nanowires with perpendicular magnetic anisotropy are of...
Suppressing the stochastic domain wall (DW) motion in magnetic nanowires is of great importance for ...
We report on domain wall pinning behavior and the potential-energy landscapes created by notches of ...
The potential experienced by transverse domain walls (TDWs) in the vicinity of asymmetric constricti...
The potential experienced by transverse domain walls (TDWs) in the vicinity of asymmetric constricti...
The domain wall-related change in the anisotropic magnetoresistance in L-shaped permalloy nanowires ...
The interaction mechanism between transverse domain walls (TDWs) in Permalloy nanowires and artifici...
The domain wall-related change in the anisotropic magnetoresistance in L-shaped permalloy nanowires ...
The domain wall-related change in the anisotropic magnetoresistance in L-shaped permalloy nanowires ...
Domain wall (DW) depinning and motion in the viscous regime induced by magnetic fields, are investig...
The potential experienced by transverse domain walls (TDWs) in the vicinity of asymmetric constricti...
Poster presented at the International Magnetics Conference (INTERMAG Europe 2017), held in Dublin (I...
We have performed combined electrical and magneto-optical Kerr effect measurements on Permalloy nano...
Stochastic phenomena in magnetic nanowires based on domain wall (DW) motion is scientifically import...
We have performed combined electrical and magneto-optical Kerr effect measurements on Permalloy nano...
Controlled domain wall motion and pinning in nanowires with perpendicular magnetic anisotropy are of...
Suppressing the stochastic domain wall (DW) motion in magnetic nanowires is of great importance for ...
We report on domain wall pinning behavior and the potential-energy landscapes created by notches of ...
The potential experienced by transverse domain walls (TDWs) in the vicinity of asymmetric constricti...
The potential experienced by transverse domain walls (TDWs) in the vicinity of asymmetric constricti...
The domain wall-related change in the anisotropic magnetoresistance in L-shaped permalloy nanowires ...
The interaction mechanism between transverse domain walls (TDWs) in Permalloy nanowires and artifici...
The domain wall-related change in the anisotropic magnetoresistance in L-shaped permalloy nanowires ...
The domain wall-related change in the anisotropic magnetoresistance in L-shaped permalloy nanowires ...
Domain wall (DW) depinning and motion in the viscous regime induced by magnetic fields, are investig...
The potential experienced by transverse domain walls (TDWs) in the vicinity of asymmetric constricti...
Poster presented at the International Magnetics Conference (INTERMAG Europe 2017), held in Dublin (I...
We have performed combined electrical and magneto-optical Kerr effect measurements on Permalloy nano...
Stochastic phenomena in magnetic nanowires based on domain wall (DW) motion is scientifically import...
We have performed combined electrical and magneto-optical Kerr effect measurements on Permalloy nano...
Controlled domain wall motion and pinning in nanowires with perpendicular magnetic anisotropy are of...