Tracking primary radiation-induced processes in matter requires ultrafast sources and high precision timing. While compact laser-driven ion accelerators are seeding the development of novel high instantaneous flux applications, combining the ultrashort ion and laser pulse durations with their inherent synchronicity to trace the real-time evolution of initial damage events has yet to be realized. Here we report on the absolute measurement of proton bursts as short as 3.5±0.7 ps from laser solid target interactions for this purpose. Our results verify that laser-driven ion acceleration can deliver interaction times over a factor of hundred shorter than those of state-of-the-art accelerators optimized for high instantaneous flux. Furthermore, ...
One of the most exciting results recently obtained in the ultraintense interaction research area is ...
AbstractThe use of laser-accelerated protons as a particle probe for the detection of electric field...
This dissertation describes proton and ion acceleration measurements from high intensity (~ 1019 Wcm...
The interaction of ultra-intense high-power lasers with solid-state targets has been largely studied...
Highly energetic electrons are generated at the early phases of the interaction of short-pulse highi...
The interaction of an ultra-intense laser with a solid state target allows the production of multi-M...
Recent simulations show that an idealized, high intensity, short pulse laser can generate quasi-mono...
The interaction of an ultra-intense laser with a solid state target allows the production of multi-M...
Laser-plasma interactions have been studied in detail over the past twenty years, as they show great...
This thesis reports on experimental investigations into ion acceleration driven by high power laser ...
We present the experimental results on ion acceleration by petawatt femtosecond laser solid interact...
A theoretical study complemented with published experimental data of proton acceleration from sub-mi...
International audienceThe study of the interaction between ultrashort laser pulses at relativistic i...
This thesis experimentally investigates laser-driven proton acceleration in the regime of target nor...
One of the most exciting results recently obtained in the ultraintense interaction research area is ...
AbstractThe use of laser-accelerated protons as a particle probe for the detection of electric field...
This dissertation describes proton and ion acceleration measurements from high intensity (~ 1019 Wcm...
The interaction of ultra-intense high-power lasers with solid-state targets has been largely studied...
Highly energetic electrons are generated at the early phases of the interaction of short-pulse highi...
The interaction of an ultra-intense laser with a solid state target allows the production of multi-M...
Recent simulations show that an idealized, high intensity, short pulse laser can generate quasi-mono...
The interaction of an ultra-intense laser with a solid state target allows the production of multi-M...
Laser-plasma interactions have been studied in detail over the past twenty years, as they show great...
This thesis reports on experimental investigations into ion acceleration driven by high power laser ...
We present the experimental results on ion acceleration by petawatt femtosecond laser solid interact...
A theoretical study complemented with published experimental data of proton acceleration from sub-mi...
International audienceThe study of the interaction between ultrashort laser pulses at relativistic i...
This thesis experimentally investigates laser-driven proton acceleration in the regime of target nor...
One of the most exciting results recently obtained in the ultraintense interaction research area is ...
AbstractThe use of laser-accelerated protons as a particle probe for the detection of electric field...
This dissertation describes proton and ion acceleration measurements from high intensity (~ 1019 Wcm...