6 pages, 3 figures, plus supplementary material (manuscript)International audienceRecent studies in three-dimensional spintronics propose that the Œrsted field plays a significant role in cylindrical nanowires. However, there is no direct report on its impact on magnetic textures. Here, we use time-resolved scanning transmission x-ray microscopy to image the dynamic response of magnetization in cylindrical Co30Ni70 nanowires subjected to nanosecond Œrsted field pulses. We observe the tilting of longitudinally magnetized domains toward the azimuthal Œrsted field direction and create a robust model to reproduce the differential magnetic contrasts and extract the angle of tilt. Furthermore, we report the compression and expansion, or breathing...
Copyright © 2008 The American Physical SocietyWe have used time-resolved scanning Kerr microscopy to...
Magnetic sensing and logic devices based on the motion of magnetic domain walls rely on the precise ...
Understanding and controlling the manipulation of spin structures on a nanometer length scale is of ...
6 pages, 3 figures, plus supplementary material (manuscript)International audienceRecent studies in ...
Published in Phys. Rev. B 83, 020406 (2011) (Rapid Communications)International audienceWe have used...
The future developments of three-dimensional magnetic nanotechnology require the control of domain w...
Cylindrical magnetic nanowires provide a perfect platform to study the dynamics of magnetic domain w...
[EN] Magnetic cylindrical nanowires are promising candidates for future three-dimensional nanotechno...
We study reversible domain wall motion in half-ring Ni80Fe20 nanowires on a nanosecond (ns) timescal...
We report on the time-resolved investigation of current- and field-induced domain wall motion in the...
We report on transverse domain wall (DW) dynamics in two closely spaced cylindrical nanowires. The m...
The recent magnetic racetrack memory device proposed by IBM has garnered much interest due to its po...
This thesis deals with the magnetization dynamics in nanostructures of NiFe alloys (Ni$_{80}$Fe$_{20...
Understanding the domain wall dynamics is an important issue in modern magnetism. Here we present re...
International audienceWe report several procedures for the robust nucleation of magnetic domain wall...
Copyright © 2008 The American Physical SocietyWe have used time-resolved scanning Kerr microscopy to...
Magnetic sensing and logic devices based on the motion of magnetic domain walls rely on the precise ...
Understanding and controlling the manipulation of spin structures on a nanometer length scale is of ...
6 pages, 3 figures, plus supplementary material (manuscript)International audienceRecent studies in ...
Published in Phys. Rev. B 83, 020406 (2011) (Rapid Communications)International audienceWe have used...
The future developments of three-dimensional magnetic nanotechnology require the control of domain w...
Cylindrical magnetic nanowires provide a perfect platform to study the dynamics of magnetic domain w...
[EN] Magnetic cylindrical nanowires are promising candidates for future three-dimensional nanotechno...
We study reversible domain wall motion in half-ring Ni80Fe20 nanowires on a nanosecond (ns) timescal...
We report on the time-resolved investigation of current- and field-induced domain wall motion in the...
We report on transverse domain wall (DW) dynamics in two closely spaced cylindrical nanowires. The m...
The recent magnetic racetrack memory device proposed by IBM has garnered much interest due to its po...
This thesis deals with the magnetization dynamics in nanostructures of NiFe alloys (Ni$_{80}$Fe$_{20...
Understanding the domain wall dynamics is an important issue in modern magnetism. Here we present re...
International audienceWe report several procedures for the robust nucleation of magnetic domain wall...
Copyright © 2008 The American Physical SocietyWe have used time-resolved scanning Kerr microscopy to...
Magnetic sensing and logic devices based on the motion of magnetic domain walls rely on the precise ...
Understanding and controlling the manipulation of spin structures on a nanometer length scale is of ...