Electron dynamics in the bulk of large band gap dielectric crystals induced by intense femtosecond laser pulses at 800 nm is studied. With laser intensities (a few 10 TW/cm 2) under the ablation threshold, electrons with unexpected energies in excess of 40-50 eV are observed by using the photoemission spectroscopy. A theoretical approach based on the Boltzmann kinetic equation including state-of-the-art modeling for various particles interactions is developed to interpret these experimental observations. A direct comparison shows that both electron heating in the bulk and a further laser field acceleration after ejection from the material contribute equivalently to the final electron energy gain. The laser energy deposition in the material ...
International audienceNumerical modeling of electronic excitation processes induced by ultra-short l...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...
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...
International audienceElectron dynamics in the bulk of large band gap dielectric crystals induced by...
The electron dynamics in dielectric materials induced by intense femtosecond laser pulses is theoret...
International audienceThe electron dynamics in dielectric materials induced by intense femtosecond l...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
International audienceTo shed light on ultra-short laser interactions, we study the laser ionization...
International audienceTo shed light on ultra-short laser interactions, we study the laser ionization...
International audienceTo shed light on ultra-short laser interactions, we study the laser ionization...
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...
This study develops a quantum mechanical model to investigate energy absorption in ultrafast laser o...
International audienceNumerical modeling of electronic excitation processes induced by ultra-short l...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...
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...
International audienceElectron dynamics in the bulk of large band gap dielectric crystals induced by...
The electron dynamics in dielectric materials induced by intense femtosecond laser pulses is theoret...
International audienceThe electron dynamics in dielectric materials induced by intense femtosecond l...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
International audienceTo shed light on ultra-short laser interactions, we study the laser ionization...
International audienceTo shed light on ultra-short laser interactions, we study the laser ionization...
International audienceTo shed light on ultra-short laser interactions, we study the laser ionization...
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...
This study develops a quantum mechanical model to investigate energy absorption in ultrafast laser o...
International audienceNumerical modeling of electronic excitation processes induced by ultra-short l...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...