Formation of carbon nanoclusters in a single-laser-pulse created ablation plume was studied both in vacuum and in a noble gas environment at various pressures. The developed theory provides cluster radius dependence on combination of laser parameters, properties of ablated material, and type and pressure of an ambient gas in agreement with experiments. The experiments were performed on carbon nanoclusters formed by laser ablation of graphite targets with 12 picosecond 532 nm laser pulses at MHz-range repetition rate in a broad range of ambient He, Ar, Kr, and Xe gas pressures from 2× 10-2 to 1500 Torr. The experimental results confirmed our theoretical prediction that the average size of the nanoparticles depends weakly on the type of the a...
Abstract We describe the basic principles of nanoparticle synthesis by conventional pulsed laser abl...
In this thesis I describe investigations of the interaction of strong laser fields with nanoscale t...
International audienceThe mechanisms involved into the formation of clusters by pulsed laser ablatio...
Formation of carbon nanoclusters in a laser-pulse created plume expanding in vacuum and in a noble g...
We demonstrate experimentally and describe theoretically the formation of carbon nanoclusters create...
Ablation plumes caused by short-pulse laser irradiation provide conditions which are well suited to ...
International audienceLaser-produced nanoparticles have found many applications in bio-photonics, me...
International audienceBoth laser ablation and spark discharge techniques are promising green methods...
International audienceLaser ablation (LA) is one of simple and versatile techniques for synthesis of...
International audienceIn this study, first we examine nanoparticle formation by femtosecond laser ab...
International audienceRecent promising methods of nanoparticle fabrication include laser ablation an...
Laser ablation of solids into background gases is a proven cluster-assembly method. It was used to s...
International audienceNanoparticle formation by laser ablation in liquids is studied numerically. We...
Abstract We describe the basic principles of nanoparticle synthesis by conventional pulsed laser abl...
In this thesis I describe investigations of the interaction of strong laser fields with nanoscale t...
International audienceThe mechanisms involved into the formation of clusters by pulsed laser ablatio...
Formation of carbon nanoclusters in a laser-pulse created plume expanding in vacuum and in a noble g...
We demonstrate experimentally and describe theoretically the formation of carbon nanoclusters create...
Ablation plumes caused by short-pulse laser irradiation provide conditions which are well suited to ...
International audienceLaser-produced nanoparticles have found many applications in bio-photonics, me...
International audienceBoth laser ablation and spark discharge techniques are promising green methods...
International audienceLaser ablation (LA) is one of simple and versatile techniques for synthesis of...
International audienceIn this study, first we examine nanoparticle formation by femtosecond laser ab...
International audienceRecent promising methods of nanoparticle fabrication include laser ablation an...
Laser ablation of solids into background gases is a proven cluster-assembly method. It was used to s...
International audienceNanoparticle formation by laser ablation in liquids is studied numerically. We...
Abstract We describe the basic principles of nanoparticle synthesis by conventional pulsed laser abl...
In this thesis I describe investigations of the interaction of strong laser fields with nanoscale t...
International audienceThe mechanisms involved into the formation of clusters by pulsed laser ablatio...