Molecular dynamics simulations are used to investigate the effect of photochemical processes on molecular ejection mechanisms in laser ablation of organic solids. The presence of photochemical decomposition processes and subsequent chemical reactions changes the temporal and spatial energy deposition profile from pure photothermal ablation. A strong and broad acoustic wave propagation results and this pressure wave in conjunction with the temperature in-crease in the absorbing region causes the ejection of hot massive molecular clusters. These massive clusters later dis-integrate in the plume into the smaller clusters and monomers due to ongoing chemical reactions
Rapid transformations through the liquid and vapor phases induced by laser-solid interactions are de...
Several physics and computational approaches have been developed to globally characterize phenomena ...
International audienceThe mechanisms involved into the formation of clusters by pulsed laser ablatio...
We have investigated by molecular dynamics simulations the ablation of material that is onset by pho...
The molecular dynamics (MD) simulation technique has been applied to investigate fundamental aspects...
International audienceThe molecular dynamics (MD) simulation technique has been applied to investiga...
A coarse-grained model has been developed for molecular dynamics simulations of the interaction of l...
Contents I. Introduction 321 II. Computational Methods for Laser Ablation of Molecular Systems 32...
Abstract. A two-stage computational model of the evolution of a plume generated by laser ablation of...
In this study, we employed molecular dynamics (MD) simulations to investigate ablation induced by th...
In a molecular solid, there is an ultrafast transfer of energy between the internal molecular vibrat...
Laser micro-machining has been widely applied for material processing in many industries. A phenomen...
In the irradiation of condensed phases at high laser irradiances, the ejection/removal of a high qua...
We have developed a simplified molecular-dynamical model for simulating ablation of solid surfaces b...
An annealing model is extended to treat the vaporization process, and a hydrodynamic model describes...
Rapid transformations through the liquid and vapor phases induced by laser-solid interactions are de...
Several physics and computational approaches have been developed to globally characterize phenomena ...
International audienceThe mechanisms involved into the formation of clusters by pulsed laser ablatio...
We have investigated by molecular dynamics simulations the ablation of material that is onset by pho...
The molecular dynamics (MD) simulation technique has been applied to investigate fundamental aspects...
International audienceThe molecular dynamics (MD) simulation technique has been applied to investiga...
A coarse-grained model has been developed for molecular dynamics simulations of the interaction of l...
Contents I. Introduction 321 II. Computational Methods for Laser Ablation of Molecular Systems 32...
Abstract. A two-stage computational model of the evolution of a plume generated by laser ablation of...
In this study, we employed molecular dynamics (MD) simulations to investigate ablation induced by th...
In a molecular solid, there is an ultrafast transfer of energy between the internal molecular vibrat...
Laser micro-machining has been widely applied for material processing in many industries. A phenomen...
In the irradiation of condensed phases at high laser irradiances, the ejection/removal of a high qua...
We have developed a simplified molecular-dynamical model for simulating ablation of solid surfaces b...
An annealing model is extended to treat the vaporization process, and a hydrodynamic model describes...
Rapid transformations through the liquid and vapor phases induced by laser-solid interactions are de...
Several physics and computational approaches have been developed to globally characterize phenomena ...
International audienceThe mechanisms involved into the formation of clusters by pulsed laser ablatio...