The new phenomena induced by femtosecond lasers lead to the new area of ultrafast science. It is a significant challenge to explain the phenomena associated with complex non-equilibrium and non-linear processes. Although there is a growing body of experimental observation, a comprehensive model remains undeveloped. We review the challenges in understanding the photon absorption stage mainly for the femtosecond ablation of wide bandgap materials at the intensities of 1013-1014 W/cm2. Major opinions and challenges in ionization mechanisms are presented by primarily considering multiphoton ionization and avalanche ionization
International audienceWe study experimentally the electronic excitation mechanisms involved in the b...
2012 International High-Power Laser Ablation Conference 30 april -30 may 2012International audienceE...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...
Energy transport in femtosecond laser ablation can be divided into two stages: 1) laser energy absor...
International audienceTo shed light on ultra-short laser interactions, we study the laser ionization...
This study develops a quantum mechanical model to investigate energy absorption in ultrafast laser o...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
Conference on Laser Applications in Microelectronic and Optoelectronic Manufacturing (LAMOM) XVI, Sa...
The processes of nonlinear absorption is considered in transparent materials like nitride semiconduc...
The electron dynamics in dielectric materials induced by intense femtosecond laser pulses is theoret...
Better understanding of ultra-short laser interactions requires two-temperature modeling of laser en...
International audienceElectron dynamics in the bulk of large band gap dielectric crystals induced by...
During an ultrashort laser pulse, numerous photons are emitted in a very short period of time leadin...
In wide bandgap dielectric materials, high-intensity amplified ultrafast laser pulses can excite ele...
International audienceWe study experimentally the electronic excitation mechanisms involved in the b...
2012 International High-Power Laser Ablation Conference 30 april -30 may 2012International audienceE...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...
Energy transport in femtosecond laser ablation can be divided into two stages: 1) laser energy absor...
International audienceTo shed light on ultra-short laser interactions, we study the laser ionization...
This study develops a quantum mechanical model to investigate energy absorption in ultrafast laser o...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
Conference on Laser Applications in Microelectronic and Optoelectronic Manufacturing (LAMOM) XVI, Sa...
The processes of nonlinear absorption is considered in transparent materials like nitride semiconduc...
The electron dynamics in dielectric materials induced by intense femtosecond laser pulses is theoret...
Better understanding of ultra-short laser interactions requires two-temperature modeling of laser en...
International audienceElectron dynamics in the bulk of large band gap dielectric crystals induced by...
During an ultrashort laser pulse, numerous photons are emitted in a very short period of time leadin...
In wide bandgap dielectric materials, high-intensity amplified ultrafast laser pulses can excite ele...
International audienceWe study experimentally the electronic excitation mechanisms involved in the b...
2012 International High-Power Laser Ablation Conference 30 april -30 may 2012International audienceE...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...