Particle-in-cell methodology is applied to study the simultaneous charging and coagulation of a nanoparticle, taking into account the self-consistent dynamics of surrounding plasma induced by laser ablation in liquid. The model uses, as an input, plasma temperature and electron number density which are experimentally obtained by high temporally resolved optical emission spectroscopy of the laser-induced plasma in water. Results show the important role of ions in the growth process and of the atom-induced evaporation process for the final nanoparticle size. The competition between different mechanisms of nanoparticle formation in the laser-induced plasma is finally discussed
International audienceNanoparticles have found numerous applications in such areas as photonics, ele...
A comprehensive picture of the nanosecond-laser generation of colloidal nanoparticles in liquids is ...
In the present article, we describe the process of nanoparticle formation during pulsed laser ablati...
The laser induced plasma during the nanosecond Pulsed Laser Ablation in Liquid (PLAL) plays a crucia...
In this paper experimental temperature and density maps of the laser induced plasma in water during ...
International audienceNanoparticle formation by laser ablation in liquids is studied numerically. We...
In this paper, emission spectroscopy and fast imaging surveys during pulsed laser ablation in liquid...
International audienceNanoparticles formation in a laser-induced plasma plume in the ambient air has...
International audienceLaser ablation in liquids is a versatile and promising method for synthesis of...
The preparation of spherical metallic nanoparticles (NPs), in the range of 10-100 nm, using pulsed l...
International audienceLaser ablation (LA) is one of simple and versatile techniques for synthesis of...
In the last decade Pulsed Laser Ablation in Liquids (PLAL) has been widely investigated from the fun...
In this work the effects of the pressure between 1–150 Bar on pulsed laser ablation in liquids (PLAL...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
International audienceNanoparticles have found numerous applications in such areas as photonics, ele...
A comprehensive picture of the nanosecond-laser generation of colloidal nanoparticles in liquids is ...
In the present article, we describe the process of nanoparticle formation during pulsed laser ablati...
The laser induced plasma during the nanosecond Pulsed Laser Ablation in Liquid (PLAL) plays a crucia...
In this paper experimental temperature and density maps of the laser induced plasma in water during ...
International audienceNanoparticle formation by laser ablation in liquids is studied numerically. We...
In this paper, emission spectroscopy and fast imaging surveys during pulsed laser ablation in liquid...
International audienceNanoparticles formation in a laser-induced plasma plume in the ambient air has...
International audienceLaser ablation in liquids is a versatile and promising method for synthesis of...
The preparation of spherical metallic nanoparticles (NPs), in the range of 10-100 nm, using pulsed l...
International audienceLaser ablation (LA) is one of simple and versatile techniques for synthesis of...
In the last decade Pulsed Laser Ablation in Liquids (PLAL) has been widely investigated from the fun...
In this work the effects of the pressure between 1–150 Bar on pulsed laser ablation in liquids (PLAL...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
International audienceNanoparticles have found numerous applications in such areas as photonics, ele...
A comprehensive picture of the nanosecond-laser generation of colloidal nanoparticles in liquids is ...
In the present article, we describe the process of nanoparticle formation during pulsed laser ablati...