Deposition temperature effect on morphological, topological and magnetic characteristics of nanoparticle-assembled Co50Fe50 films produced by femtosecond pulsed laser deposition (fs-PLD) on Kapton substrate was investigated. For substrate temperature Ts≥550 K, a decrement of the nanoparticles aggregates and an increment of the nanoparticles density were observed with respect to room temperature deposition; this in association with a strong increase of the magnetoelastic anisotropy energy lead to a reduction of the remanence ratio, a significant rise of the saturation and coercive fields and an enhancement of the saturation magnetization. The results are discussed focusing on: i) the correlation between films structure and their magnetic beh...
Material synthesis using femtosecond pulsed laser deposition (fs-PLD) in vacuum is an important appl...
The perfect (111)-oriented Co0.8Fe2.2O4 thin films are grown on Pt(111)/Si substrate using pulsed la...
Exchange-coupled monocomponent magnetic films constituted of disk-shaped Ni and Fe nanoparticles wer...
Deposition temperature effect on morphological, topological and magnetic characteristics of nanopart...
Femtosecond pulsed laser deposition, carried out in high vacuum, leads the ablation of any target ma...
Fe nanoparticle (NP)-assembled thin films with different thickness were prepared by femtosecond-puls...
Cobalt ferrite thin films of different thicknesses were pulsed-laser deposited onto a fused quartz s...
Ultrafast pulsed laser deposition is an interesting technique for the synthesis of nanoparticles (NP...
We present a detailed study on the morphology and magnetic properties of Co nanostructures deposited...
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...
The emergence of thin film CoFeB has driven research and industrial applications in the past decades...
Material synthesis using femtosecond pulsed laser deposition (fs-PLD) in vacuum is an important appl...
The perfect (111)-oriented Co0.8Fe2.2O4 thin films are grown on Pt(111)/Si substrate using pulsed la...
Exchange-coupled monocomponent magnetic films constituted of disk-shaped Ni and Fe nanoparticles wer...
Deposition temperature effect on morphological, topological and magnetic characteristics of nanopart...
Femtosecond pulsed laser deposition, carried out in high vacuum, leads the ablation of any target ma...
Fe nanoparticle (NP)-assembled thin films with different thickness were prepared by femtosecond-puls...
Cobalt ferrite thin films of different thicknesses were pulsed-laser deposited onto a fused quartz s...
Ultrafast pulsed laser deposition is an interesting technique for the synthesis of nanoparticles (NP...
We present a detailed study on the morphology and magnetic properties of Co nanostructures deposited...
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...
The emergence of thin film CoFeB has driven research and industrial applications in the past decades...
Material synthesis using femtosecond pulsed laser deposition (fs-PLD) in vacuum is an important appl...
The perfect (111)-oriented Co0.8Fe2.2O4 thin films are grown on Pt(111)/Si substrate using pulsed la...
Exchange-coupled monocomponent magnetic films constituted of disk-shaped Ni and Fe nanoparticles wer...