Head-to-head domain walls (DW) are formed and detected in U-shaped spin valve nanostrips by a Bitter Method on scanning electron microscope. We find that optimization of the washing technique is critical to proper deposition of magnetic nanoparticles (MNPs). The DW position is monitored electrically with giant magnetoresistance (GMR) similar to a potentiometer. DWs are repeatedly pinned and depinned from a site near the device center using a stage with two axis field. We first confirm the distribution of depinning events from a random sample of devices and obtain a standard deviation of 2.2 Oe. We then obtain an experimental signal of 8 Oe shift in depinning field from just 7 MNPs of 35 nm diameter. © 2013 IEEE
Nanofabrication has allowed the development of new concepts such as magnetic logic and race-track me...
In recent decades, atomic force microscope (AFM) tip-based nanomachining has gained the increased at...
Magnetic domain wall memory technology, wherein the information is stored in magnetic domains of mul...
Head-to-head domain walls (DW) are formed and detected in U-shaped spin valve nanostrips by a Bitter...
Head-to-head domain walls (DW) are formed and detected in U-shaped spin valve nanostrips by a Bitter...
We investigate the effect of a single magnetic bead (MB) on the domain wall (DW) pinning/depinning f...
Magnetic systems based on the manipulation of domain walls (DWs) in nanometre-scaled tracks have bee...
We perform magnetoresistance (MR) and magneto-optical Kerr effect (MOKE) measurements to experimenta...
Published version, Applied Physics Express 2, 023003 (2009) http://dx.doi.org/10.1143/APEX.2.023003I...
Giant magnetoresistive (GMR) biosensors consisting of many rectangular stripes are being developed f...
The motion of a magnetic domain wall in a submicrometer magnetic wire was detected by use of the gia...
Domain wall probes (DW-probes) were custom-made by modifying standard commercial magnetic force micr...
Geometrically constrained magnetic domain walls (DWs) in magnetic nanowires can be manipulated at th...
International audienceNanometer scale observation of the depinning of a narrow domain wall (DW) unde...
This research evaluates the use of giant magnetoresistance (GMR) sensors to trap and count small con...
Nanofabrication has allowed the development of new concepts such as magnetic logic and race-track me...
In recent decades, atomic force microscope (AFM) tip-based nanomachining has gained the increased at...
Magnetic domain wall memory technology, wherein the information is stored in magnetic domains of mul...
Head-to-head domain walls (DW) are formed and detected in U-shaped spin valve nanostrips by a Bitter...
Head-to-head domain walls (DW) are formed and detected in U-shaped spin valve nanostrips by a Bitter...
We investigate the effect of a single magnetic bead (MB) on the domain wall (DW) pinning/depinning f...
Magnetic systems based on the manipulation of domain walls (DWs) in nanometre-scaled tracks have bee...
We perform magnetoresistance (MR) and magneto-optical Kerr effect (MOKE) measurements to experimenta...
Published version, Applied Physics Express 2, 023003 (2009) http://dx.doi.org/10.1143/APEX.2.023003I...
Giant magnetoresistive (GMR) biosensors consisting of many rectangular stripes are being developed f...
The motion of a magnetic domain wall in a submicrometer magnetic wire was detected by use of the gia...
Domain wall probes (DW-probes) were custom-made by modifying standard commercial magnetic force micr...
Geometrically constrained magnetic domain walls (DWs) in magnetic nanowires can be manipulated at th...
International audienceNanometer scale observation of the depinning of a narrow domain wall (DW) unde...
This research evaluates the use of giant magnetoresistance (GMR) sensors to trap and count small con...
Nanofabrication has allowed the development of new concepts such as magnetic logic and race-track me...
In recent decades, atomic force microscope (AFM) tip-based nanomachining has gained the increased at...
Magnetic domain wall memory technology, wherein the information is stored in magnetic domains of mul...