International audienceExplosive crystallization is a well known phenomenon occurring due to the thermodynamic instability of strongly under-cooled liquids, which is particularly relevant in pulsed laser annealing processes of amorphous semiconductor materials due to the globally exothermic amorphous-to-liquid-to-crystal transition pathway. In spite of the assessed understanding of this phenomenon, quantitative predictions of the material kinetics promoted by explosive crystallization are hardly achieved due to the lack of a consistent model able to simulate the concurrent kinetics of the amorphous-liquid and liquid-crystal interfaces. Here, we propose a multi-well phase-field model specifically suited for the simulation of explosive crystal...
We propose a phase-field model for the kinetics of isothermal crystallization of an amorphous solid ...
Numerical simulations of crystals with multiple crystal orientations have become the subject of inte...
Two melting mechanisms are reproduced and quantified for superheating and melting of Al nanolayer ir...
International audienceExplosive crystallization is a well known phenomenon occurring due to the ther...
We carry out phase field modeling as a continuum simulation technique in order to study rapid crysta...
Laser processing (sintering, melting, crystallization and ablation) of nanoscale materials has been ...
International audienceUltraviolet Nanosecond Laser Annealing (LA) is a powerful tool for both fundam...
The processes involved in the pulsed laser crystallization of amorphous silicon thin films were stud...
The crystallization of amorphous semiconductors is a strongly exothermic process. Once initiated the...
Vaporization, spallation and phase explosion are considered to be the main mechanisms contributing t...
A newly developed method of backside time-resolved reflectivity measurement is useful for probing th...
A previously developed one-dimensional (ID) computational model for heat flow and nonequilibrium pha...
International audienceIn this paper a number of numerical models are presented which have been devel...
This work investigates interface kinetics during nanosecond pulsed excimer ablation of a metal. Duri...
Some quantitative aspects of laser-irradiated pure metals, while approaching phase explosion, are st...
We propose a phase-field model for the kinetics of isothermal crystallization of an amorphous solid ...
Numerical simulations of crystals with multiple crystal orientations have become the subject of inte...
Two melting mechanisms are reproduced and quantified for superheating and melting of Al nanolayer ir...
International audienceExplosive crystallization is a well known phenomenon occurring due to the ther...
We carry out phase field modeling as a continuum simulation technique in order to study rapid crysta...
Laser processing (sintering, melting, crystallization and ablation) of nanoscale materials has been ...
International audienceUltraviolet Nanosecond Laser Annealing (LA) is a powerful tool for both fundam...
The processes involved in the pulsed laser crystallization of amorphous silicon thin films were stud...
The crystallization of amorphous semiconductors is a strongly exothermic process. Once initiated the...
Vaporization, spallation and phase explosion are considered to be the main mechanisms contributing t...
A newly developed method of backside time-resolved reflectivity measurement is useful for probing th...
A previously developed one-dimensional (ID) computational model for heat flow and nonequilibrium pha...
International audienceIn this paper a number of numerical models are presented which have been devel...
This work investigates interface kinetics during nanosecond pulsed excimer ablation of a metal. Duri...
Some quantitative aspects of laser-irradiated pure metals, while approaching phase explosion, are st...
We propose a phase-field model for the kinetics of isothermal crystallization of an amorphous solid ...
Numerical simulations of crystals with multiple crystal orientations have become the subject of inte...
Two melting mechanisms are reproduced and quantified for superheating and melting of Al nanolayer ir...