Nonlinear interaction between femtosecond laser pulse and simple dielectric solid, silicon, at an intensity range around the damage threshold has been investigated by first-principles calculations based on time-dependent density functional theory (TDDFT). Intensity and frequency dependences are discussed making comparison with the Keldysh theory
Nonlinear photoionization of dielectrics and semiconductors is widely treated in the framework of th...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
We theoretically investigate the optical energy absorption of crystalline silicon subject to dual-co...
Nonlinear interaction between femtosecond laser pulse and simple dielectric solid, silicon, at an in...
Energy transfer processes from a high-intensity ultrashort laser pulse to electrons in simple dielec...
This Letter presents first-principles calculations of nonlinear electron-photon interactions in crys...
Laser-induced damage of SiO2 (alpha-quartz) is investigated by first-principles calculations. The ca...
AbstractWe report a first-principles computational method to describe many-electron dynamics in crys...
A real-time and real-space time-dependent density functional is applied to simulate the nonlinear el...
We develop a computational approach for ultrafast nano-optics based on first-principles time-depende...
We calculate the energy deposition by very short laser pulses in SiO2 (alpha-quartz) with a view to ...
Femtosecond-laser-induced evolution of $$\alpha$$-quartz bandgap was calculated using first principl...
Femtosecond-laser-induced evolution of -quartz bandgap was calculated using rst principles. First,Ti...
First principle electronic structure theory is used to describe the effect of crystal binding on rad...
2012 International High-Power Laser Ablation Conference 30 april -30 may 2012International audienceE...
Nonlinear photoionization of dielectrics and semiconductors is widely treated in the framework of th...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
We theoretically investigate the optical energy absorption of crystalline silicon subject to dual-co...
Nonlinear interaction between femtosecond laser pulse and simple dielectric solid, silicon, at an in...
Energy transfer processes from a high-intensity ultrashort laser pulse to electrons in simple dielec...
This Letter presents first-principles calculations of nonlinear electron-photon interactions in crys...
Laser-induced damage of SiO2 (alpha-quartz) is investigated by first-principles calculations. The ca...
AbstractWe report a first-principles computational method to describe many-electron dynamics in crys...
A real-time and real-space time-dependent density functional is applied to simulate the nonlinear el...
We develop a computational approach for ultrafast nano-optics based on first-principles time-depende...
We calculate the energy deposition by very short laser pulses in SiO2 (alpha-quartz) with a view to ...
Femtosecond-laser-induced evolution of $$\alpha$$-quartz bandgap was calculated using first principl...
Femtosecond-laser-induced evolution of -quartz bandgap was calculated using rst principles. First,Ti...
First principle electronic structure theory is used to describe the effect of crystal binding on rad...
2012 International High-Power Laser Ablation Conference 30 april -30 may 2012International audienceE...
Nonlinear photoionization of dielectrics and semiconductors is widely treated in the framework of th...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
We theoretically investigate the optical energy absorption of crystalline silicon subject to dual-co...