We have analyzed ultrafast laser ablation of a metallic target Nickel in high vacuum addressing both expansion dynamics of the various plume components ionic and nanoparticle and basic properties of the ultrafast laser ablation process. While the ion temporal profile and ion angular distribution were analyzed by means of Langmuir ion probe technique, the angular distribution of the nanoparticulate component was characterized by measuring the thickness map of deposition on a transparent substrate. The amount of ablated material per pulse was found by applying scanning white light interferometry to craters produced on a stationary target. We have also compared the angular distribution of both the ionic and nanoparticle components with ...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
We present an experimental characterization and a theoretical analysis of ultrashort laser ablation ...
Metals have three ablation threshold fluences (high,middle and low-threshold fluence, here called) f...
We have analyzed ultrafast laser ablation of a metallic target Nickel in high vacuum addressing bot...
In femtosecond laser ablation the plume has two components: a faster-moving plasma part and a slower...
In view of its fundamental interest and relevance to nanoparticle film production, we have character...
We present an experimental characterization describing the characteristics features of the plasma pl...
The characterization of a plasma plume is a key issue in laser ablation and deposition studies. Comb...
The characterization of a plasma plume is a key issue in laser ablation and deposition studies. Comb...
The dynamics of ions in ultrafast laser ablation of metals is studied over fluences ranging from the...
International audienceThe production of nanoparticles via femtosecond laser ablation of gold and cop...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
We investigated the ion laser-produced plasma plume generated during ultrafast laser ablation of cop...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
We present an experimental characterization and a theoretical analysis of ultrashort laser ablation ...
Metals have three ablation threshold fluences (high,middle and low-threshold fluence, here called) f...
We have analyzed ultrafast laser ablation of a metallic target Nickel in high vacuum addressing bot...
In femtosecond laser ablation the plume has two components: a faster-moving plasma part and a slower...
In view of its fundamental interest and relevance to nanoparticle film production, we have character...
We present an experimental characterization describing the characteristics features of the plasma pl...
The characterization of a plasma plume is a key issue in laser ablation and deposition studies. Comb...
The characterization of a plasma plume is a key issue in laser ablation and deposition studies. Comb...
The dynamics of ions in ultrafast laser ablation of metals is studied over fluences ranging from the...
International audienceThe production of nanoparticles via femtosecond laser ablation of gold and cop...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
We investigated the ion laser-produced plasma plume generated during ultrafast laser ablation of cop...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
We present an experimental characterization and a theoretical analysis of ultrashort laser ablation ...
Metals have three ablation threshold fluences (high,middle and low-threshold fluence, here called) f...