The expansion of a plume generated during laser ablation is studied with the Direct Simulation Monte Carlo method. The plume is a mixture of four disparate molecular mass components and expands in vacuum or into ambient gas. The time dependence of deposition rate is studied and the transition from an initial vacuum-like to a diffusion-like regime of expansion in ambient gas is shown. The lack of stoichiometry increases with the ratio of molecular masses of ablated particles and at disparate masses the stoichiometry is seriously affected. Ambient gas worsens the stoichiometry unless it supplies particles compensating the backward and sideward flows of plume constituents
International audienceA hybrid model is developed to study the dynamics of laser plume expansion in ...
The effect of ambient gas on the expansion dynamics of the plasma generated by laser ablation of an ...
The expansion of a plume in a background gas of pressure comparable to that used in pulsed laser dep...
The expansion of a plume generated during laser ablation is studied with the Direct Simulation Monte...
International audienceThe physical phenomena involved in the interaction of a laser-generated plasma...
Combined diagnostic measurements of deposition rates and ion time-of-flight signals have been employ...
International audienceAn expansion of a bi-component laser plume into a dilute background gas is sim...
International audienceLaser ablation from one- and two-component targets into a diluted gas backgrou...
International audienceLaser ablation from a binary target into a diluted gas background is studied b...
The interaction of a powerful laser beam with a target material may result in the formation of a plu...
International audienceThe transport of laser ablated particles through a Maxwell-distributed ambient...
International audienceA hybrid model is developed to study the dynamics of laser plume expansion in ...
The effect of ambient gas on the expansion dynamics of the plasma generated by laser ablation of an ...
The expansion of a plume in a background gas of pressure comparable to that used in pulsed laser dep...
The expansion of a plume generated during laser ablation is studied with the Direct Simulation Monte...
International audienceThe physical phenomena involved in the interaction of a laser-generated plasma...
Combined diagnostic measurements of deposition rates and ion time-of-flight signals have been employ...
International audienceAn expansion of a bi-component laser plume into a dilute background gas is sim...
International audienceLaser ablation from one- and two-component targets into a diluted gas backgrou...
International audienceLaser ablation from a binary target into a diluted gas background is studied b...
The interaction of a powerful laser beam with a target material may result in the formation of a plu...
International audienceThe transport of laser ablated particles through a Maxwell-distributed ambient...
International audienceA hybrid model is developed to study the dynamics of laser plume expansion in ...
The effect of ambient gas on the expansion dynamics of the plasma generated by laser ablation of an ...
The expansion of a plume in a background gas of pressure comparable to that used in pulsed laser dep...