We report on domain wall pinning behavior and the potential-energy landscapes created by notches of two different geometries in planar Permalloy nanowires. Domain wall depinning was probed experimentally using spatially resolved magneto-optical Kerr effect measurements. The spin structure of pinned domain walls was determined using Lorentz microscopy, and domain wall pinning behavior was also analyzed using micromagnetic simulations, which are in good qualitative agreement with experimental results. All notch structures have dimensions that are comparable with the domain wall length scales. For the notch structures investigated, the depinning field experienced by a domain wall is found to be relatively insensitive to notch geometry although...
The interactions of vortexdomain walls with corners in planar magnetic nanowires are probed using ma...
The interactions of vortexdomain walls with corners in planar magnetic nanowires are probed using ma...
The pinning of asymmetric transverse magnetic domain walls by constrictions and protrusions in thin ...
We investigate the domain wall pinning behavior in Permalloynanowires using experimental measurement...
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 potential experienced by transverse domain walls (TDWs) in the vicinity of asymmetric constricti...
The interaction mechanism between transverse domain walls (TDWs) in Permalloy nanowires and artifici...
We perform magnetoresistance (MR) and magneto-optical Kerr effect (MOKE) measurements to experimenta...
Here, we report on the control of domain wall pinning at notch features patterned in Permalloy plan...
The pinning of a magnetic domain wall in a curved Permalloy (NiFe) nanostrip is experimentally studi...
The pinning of a magnetic domain wall in a curved Permalloy (NiFe) nanostrip is experimentally studi...
The pinning of a magnetic domain wall in a curved Permalloy (NiFe) nanostrip is experimentally studi...
E ective control of the domain wall (DW) motion along the magnetic nanowires is of great importance ...
The pinning of asymmetric transverse magnetic domain walls by constrictions and protrusions in thin ...
The interactions of vortexdomain walls with corners in planar magnetic nanowires are probed using ma...
The interactions of vortexdomain walls with corners in planar magnetic nanowires are probed using ma...
The pinning of asymmetric transverse magnetic domain walls by constrictions and protrusions in thin ...
We investigate the domain wall pinning behavior in Permalloynanowires using experimental measurement...
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 potential experienced by transverse domain walls (TDWs) in the vicinity of asymmetric constricti...
The interaction mechanism between transverse domain walls (TDWs) in Permalloy nanowires and artifici...
We perform magnetoresistance (MR) and magneto-optical Kerr effect (MOKE) measurements to experimenta...
Here, we report on the control of domain wall pinning at notch features patterned in Permalloy plan...
The pinning of a magnetic domain wall in a curved Permalloy (NiFe) nanostrip is experimentally studi...
The pinning of a magnetic domain wall in a curved Permalloy (NiFe) nanostrip is experimentally studi...
The pinning of a magnetic domain wall in a curved Permalloy (NiFe) nanostrip is experimentally studi...
E ective control of the domain wall (DW) motion along the magnetic nanowires is of great importance ...
The pinning of asymmetric transverse magnetic domain walls by constrictions and protrusions in thin ...
The interactions of vortexdomain walls with corners in planar magnetic nanowires are probed using ma...
The interactions of vortexdomain walls with corners in planar magnetic nanowires are probed using ma...
The pinning of asymmetric transverse magnetic domain walls by constrictions and protrusions in thin ...