Permalloy (Ni-80 Fe-20) wire-based structures (30 nm thick and 1 . w . 10 mum wide) with junctions (crosses, networks, H-shapes, rectangular chains and ring chains) prepared on a GaAs (100) substrate were observed in both their demagnetized and remanent states by magnetic force microscopy (MFM) in order to investigate the role of junction geometry in domain formation, Except in ring chains, two classes of domain configuration are found at the junction: (i) a domain wall-like feature due to abrupt spin rotation and (ii) a triangle-shape domain consistent with a flux closure configuration, Ring chains, on the other hand, form vortex domains at every other junction. The MFM observations are compared with micromagnetic calculations which qualit...
Patterned pseudo spin-valve rings show great promise for device applications due to their non-volati...
International audienceWe report several procedures for the robust nucleation of magnetic domain wall...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering,...
Permalloy (Ni80Fe20) squares (30 nm thick and w mu m wide; 1 less than or equal to w less than or eq...
The magnetization reversal process in mesoscopic permalloy (Ni80Fe20) wire structures has been inves...
Nanoscale magnetic junctions provide a useful approach to act as building blocks for magnetoresistiv...
Domain walls may be treated as single entities that can be used to convey bits of information in pot...
Domain walls may be treated as single entities that can be used to convey bits of information in pot...
The magnetization reversal process in permalloy (Ni80Fe20) wire junction structures has been investi...
Nanoscale magnetic junctions provide a useful approach to act as building blocks for magnetoresistiv...
Domain walls may be treated as single entities that can be used to convey bits of information in pot...
Domain walls may be treated as single entities that can be used to convey bits of information in pot...
International audienceWe report several procedures for the robust nucleation of magnetic domain wall...
International audienceWe report several procedures for the robust nucleation of magnetic domain wall...
The magnetic domain configuration in a submicron Ni81Fe19 wire network has been investigated by magn...
Patterned pseudo spin-valve rings show great promise for device applications due to their non-volati...
International audienceWe report several procedures for the robust nucleation of magnetic domain wall...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering,...
Permalloy (Ni80Fe20) squares (30 nm thick and w mu m wide; 1 less than or equal to w less than or eq...
The magnetization reversal process in mesoscopic permalloy (Ni80Fe20) wire structures has been inves...
Nanoscale magnetic junctions provide a useful approach to act as building blocks for magnetoresistiv...
Domain walls may be treated as single entities that can be used to convey bits of information in pot...
Domain walls may be treated as single entities that can be used to convey bits of information in pot...
The magnetization reversal process in permalloy (Ni80Fe20) wire junction structures has been investi...
Nanoscale magnetic junctions provide a useful approach to act as building blocks for magnetoresistiv...
Domain walls may be treated as single entities that can be used to convey bits of information in pot...
Domain walls may be treated as single entities that can be used to convey bits of information in pot...
International audienceWe report several procedures for the robust nucleation of magnetic domain wall...
International audienceWe report several procedures for the robust nucleation of magnetic domain wall...
The magnetic domain configuration in a submicron Ni81Fe19 wire network has been investigated by magn...
Patterned pseudo spin-valve rings show great promise for device applications due to their non-volati...
International audienceWe report several procedures for the robust nucleation of magnetic domain wall...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering,...