There are natural limits to the spatial resolution and the deposited energy densities that can be achieved in femtosecond laser dielectric modification. These arise because of the threshold-like nature of nonlinear absorption. We use two-pulse experiments to show that both limits can be exceeded by taking advantage of absorption seeded by free electrons or self-trapped excitons, depending on the pulse separation.Peer reviewed: YesNRC publication: Ye
We demonstrate for the first time to our knowledge the generation of overcritical plasma densities i...
Conference on Laser Applications in Microelectronic and Optoelectronic Manufacturing (LAMOM) XVI, Sa...
International audienceThe controlled laser energy deposition in dielectrics is a key technological i...
International audienceThere are natural limits to the spatial resolution and the deposited energy de...
International audienceTo shed light on ultra-short laser interactions, we study the laser ionization...
A focused ultrashort pulse can reach high enough intensity that non-linear ionization dominates its ...
In wide bandgap dielectric materials, high-intensity amplified ultrafast laser pulses can excite ele...
A focused ultrashort pulse can reach high enough intensity that non-linear ionization dominates its ...
This study develops a quantum mechanical model to investigate energy absorption in ultrafast laser o...
International audienceUltrafast laser processing of nanochannels and nanovoids in the bulk of dielec...
International audienceTo overcome the resolution limits in laser processing technologies , it is hig...
The use of femtosecond (fs) trains of pulse is now well established as an efficient technique to mod...
International audienceWe investigate the nonlinear absorption of laser energy in the bulk of transpa...
International audienceUltrafast lasers have been a revolution in a number of areas of science and te...
We demonstrate for the first time to our knowledge the generation of overcritical plasma densities i...
Conference on Laser Applications in Microelectronic and Optoelectronic Manufacturing (LAMOM) XVI, Sa...
International audienceThe controlled laser energy deposition in dielectrics is a key technological i...
International audienceThere are natural limits to the spatial resolution and the deposited energy de...
International audienceTo shed light on ultra-short laser interactions, we study the laser ionization...
A focused ultrashort pulse can reach high enough intensity that non-linear ionization dominates its ...
In wide bandgap dielectric materials, high-intensity amplified ultrafast laser pulses can excite ele...
A focused ultrashort pulse can reach high enough intensity that non-linear ionization dominates its ...
This study develops a quantum mechanical model to investigate energy absorption in ultrafast laser o...
International audienceUltrafast laser processing of nanochannels and nanovoids in the bulk of dielec...
International audienceTo overcome the resolution limits in laser processing technologies , it is hig...
The use of femtosecond (fs) trains of pulse is now well established as an efficient technique to mod...
International audienceWe investigate the nonlinear absorption of laser energy in the bulk of transpa...
International audienceUltrafast lasers have been a revolution in a number of areas of science and te...
We demonstrate for the first time to our knowledge the generation of overcritical plasma densities i...
Conference on Laser Applications in Microelectronic and Optoelectronic Manufacturing (LAMOM) XVI, Sa...
International audienceThe controlled laser energy deposition in dielectrics is a key technological i...