Giant magnetoresistance effect is found in films of magnetic nanoparticles uniformly mixed with non-magnetic metallic nanoparticles produced by ultrashort pulsed laser deposition (uPLD). The uPLD, which uses femtosecond laser pulses, has been recently reported as a powerful technique for obtaining nanoparticles and nanogranular films. As-deposited Co-Cu and Fe-Ag films in a moderate volume fraction range of magnetic component (15-25\%) present detectable values of this magnetoresistive effect, although the average size of the particles is higher than in typical nanogranular materials for magnetoresistive applications. The determined longitudinal, transverse and perpendicular magnetoresistance behaviours, at the temperatures of 10 and 250K, ...
Femtosecond pulsed laser deposition, carried out in high vacuum, leads the ablation of any target ma...
Femtosecond pulsed laser deposition (fs-PLD) in vacuum has been demonstrated to be a powerful and ve...
Femtosecond pulsed laser deposition (fs-PLD) in vacuum has been demonstrated to be a powerful and ve...
Giant magnetoresistance effect is found in films of magnetic nanoparticles uniformly mixed with non-...
Material synthesis using femtosecond pulsed laser deposition (fs-PLD) in vacuum is an important appl...
Films of magnetic nanoparticles uniformly mixed with non-magnetic nanoparticles have been produced b...
Pulsed laser deposition is a technique used since twenty years ago for the production of nanoparticl...
Films produced by means of ultrashort pulsed laser deposition (uPLD) and constituted of Co nanoparti...
Giant magnetoresistance of up to 9.5% in 1.5 T at 14 K has been observed in Co19Cu81, thin films pre...
Exchange-coupled monocomponent magnetic films constituted of disk-shaped Ni and Fe nanoparticles wer...
Femtosecond pulsed laser deposition, carried out in high vacuum, leads the ablation of any target ma...
Femtosecond pulsed laser deposition (fs-PLD) in vacuum has been demonstrated to be a powerful and ve...
Femtosecond pulsed laser deposition (fs-PLD) in vacuum has been demonstrated to be a powerful and ve...
Giant magnetoresistance effect is found in films of magnetic nanoparticles uniformly mixed with non-...
Material synthesis using femtosecond pulsed laser deposition (fs-PLD) in vacuum is an important appl...
Films of magnetic nanoparticles uniformly mixed with non-magnetic nanoparticles have been produced b...
Pulsed laser deposition is a technique used since twenty years ago for the production of nanoparticl...
Films produced by means of ultrashort pulsed laser deposition (uPLD) and constituted of Co nanoparti...
Giant magnetoresistance of up to 9.5% in 1.5 T at 14 K has been observed in Co19Cu81, thin films pre...
Exchange-coupled monocomponent magnetic films constituted of disk-shaped Ni and Fe nanoparticles wer...
Femtosecond pulsed laser deposition, carried out in high vacuum, leads the ablation of any target ma...
Femtosecond pulsed laser deposition (fs-PLD) in vacuum has been demonstrated to be a powerful and ve...
Femtosecond pulsed laser deposition (fs-PLD) in vacuum has been demonstrated to be a powerful and ve...