A model based on optical Bloch equations is developed to describe the interaction of femtosecond laser pulses with dielectric solids, accounting for optical-cycle-resolved electron dynamics. It includes the main physical processes at play: photoionization, impact ionization, direct and collisional laser heating, and recombination. By using an electron band structure, this approach also accounts for material optical properties as nonlinear polarization response. Various studies are performed, shedding light on the contribution of various processes to the full electron dynamics depending on laser intensity and wavelength. In particular, the standard influence of the impact ionization process is retrieved
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...
Electron dynamics in the bulk of large band gap dielectric crystals induced by intense femtosecond l...
Laser-induced electronic excitation, absorption and relaxation are the key issues in ultra-short las...
A model based on optical Bloch equations is developed to describe the interaction of femtosecond las...
Modern laser technologies provide high-intensity single- or few-cycle laser pulses which open new do...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
The electron dynamics in dielectric materials induced by intense femtosecond laser pulses is theoret...
This study develops a quantum mechanical model to investigate energy absorption in ultrafast laser o...
International audienceTo shed light on ultra-short laser interactions, we study the laser ionization...
International audienceNumerical modeling of electronic excitation processes induced by ultra-short l...
International audienceUltrashort laser interactions with dielectrics are numerically investigated by...
Electron dynamics in the bulk of large band gap dielectric crystals induced by intense femtosecond l...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
International audienceA continuum model based on a drift-diffusion approach is applied to describe t...
International audienceWe address the peculiarities of femtosecond laser ablation of both metallic an...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...
Electron dynamics in the bulk of large band gap dielectric crystals induced by intense femtosecond l...
Laser-induced electronic excitation, absorption and relaxation are the key issues in ultra-short las...
A model based on optical Bloch equations is developed to describe the interaction of femtosecond las...
Modern laser technologies provide high-intensity single- or few-cycle laser pulses which open new do...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
The electron dynamics in dielectric materials induced by intense femtosecond laser pulses is theoret...
This study develops a quantum mechanical model to investigate energy absorption in ultrafast laser o...
International audienceTo shed light on ultra-short laser interactions, we study the laser ionization...
International audienceNumerical modeling of electronic excitation processes induced by ultra-short l...
International audienceUltrashort laser interactions with dielectrics are numerically investigated by...
Electron dynamics in the bulk of large band gap dielectric crystals induced by intense femtosecond l...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
International audienceA continuum model based on a drift-diffusion approach is applied to describe t...
International audienceWe address the peculiarities of femtosecond laser ablation of both metallic an...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...
Electron dynamics in the bulk of large band gap dielectric crystals induced by intense femtosecond l...
Laser-induced electronic excitation, absorption and relaxation are the key issues in ultra-short las...