Title of article :
Channels of energy redistribution in short-pulse laser
interactions with metal targets
Author/Authors :
Leonid V. Zhigilei، نويسنده , , Dmitriy S. Ivanov 1، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Abstract :
The kinetics and channels of laser energy redistribution in a target irradiated by a short, 1 ps, laser pulse is investigated in
computer simulations performed with a model that combines molecular dynamics (MD) simulations with a continuum
description of the laser excitation and relaxation of the conduction band electrons, based on the two-temperature model (TTM).
The energy transferred from the excited electrons to the lattice splits into several parts, namely the energy of the thermal motion
of the atoms, the energy of collective atomic motions associated with the relaxation of laser-induced stresses, the energy carried
away from the surface region of the target by a stress wave, the energy of quasi-static anisotropic stresses, and, at laser fluences
above the melting threshold, the energy transferred to the latent heat of melting and then released upon recrystallization. The
presence of the non-thermal channels of energy redistribution (stress wave and quasi-static stresses), not accounted for in the
conventional TTM model, can have important implications for interpretation of experimental results on the kinetics of thermal
and mechanical relaxation of a target irradiated by a short laser pulse as well as on the characteristics of laser-induced phase
transformations. The fraction of the non-thermal energy in the total laser energy partitioning increases with increasing laser
fluence.
Keywords :
Laser interactions , Molecular dynamics , Laser energy redistribution , Laser melting , Heat transfer , Laser-induced stresses
Journal title :
Applied Surface Science
Journal title :
Applied Surface Science