Polycrystalline Ni nanowires were electrodeposited in nanoporous anodized alumina membranes with mean diameter of approximately 42 nm. Their magnetic properties were studied at 300 K, by measurements of recoil curves from demagnetized state and also from saturated state. M(rev) and M(irr) components were obtained and M(rev)(M(irr)) H curves were constructed from the experimental data. These curves showed a behavior that suggests a non-uniform reversal mode influenced by the presence of dipolar interactions in the system. A qualitative approach to this behavior is obtained using a Stoner-Wohlfarth model modified by a mean field term and local interaction fields. (C) 2008 Elsevier B.V. All rights reserved
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceNi polycrystalline nanowires with diameters of 50, 80, and 100 nm were electro...
International audienceNi polycrystalline nanowires with diameters of 50, 80, and 100 nm were electro...
Polycrystalline Ni nanowires were electrodeposited in nanoporous anodized alumina membranes with mea...
High-quality and compact arrays of Ni nanowires with a high ratio (up to 700) were obtained by DC el...
Polycrystalline Ni nanowires with different diameters were electrodeposited in nanoporous anodized a...
Polycrystalline Ni nanowires with different diameters were electrodeposited in nanoporous anodized a...
The magnetization reversal of Ni nanowires was studied by anisotropic magnetoresistance measurements...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
Assemblies of ferromagnetic cylinders made of Ni with diameters ranging from 35 to 250 nm were produ...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
Ni polycrystalline nanowires with diameters of 50, 80, and 100 nm were electrodeposited in cylindric...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceNi polycrystalline nanowires with diameters of 50, 80, and 100 nm were electro...
International audienceNi polycrystalline nanowires with diameters of 50, 80, and 100 nm were electro...
Polycrystalline Ni nanowires were electrodeposited in nanoporous anodized alumina membranes with mea...
High-quality and compact arrays of Ni nanowires with a high ratio (up to 700) were obtained by DC el...
Polycrystalline Ni nanowires with different diameters were electrodeposited in nanoporous anodized a...
Polycrystalline Ni nanowires with different diameters were electrodeposited in nanoporous anodized a...
The magnetization reversal of Ni nanowires was studied by anisotropic magnetoresistance measurements...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
Assemblies of ferromagnetic cylinders made of Ni with diameters ranging from 35 to 250 nm were produ...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
Ni polycrystalline nanowires with diameters of 50, 80, and 100 nm were electrodeposited in cylindric...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceNi polycrystalline nanowires with diameters of 50, 80, and 100 nm were electro...
International audienceNi polycrystalline nanowires with diameters of 50, 80, and 100 nm were electro...