International audienceExperimental measurements of backward accelerated protons are presented. The beam is produced when an ultrashort (5 fs) laser pulse, delivered by a kHz laser system, with a high temporal contrast (10 8), interacts with a thick solid target. Under these conditions, proton cutoff energy dependence with laser parameters, such as pulse energy, polarization (from p to s), and pulse duration (from 5 to 500 fs), is studied. Theoretical model and two-dimensional particle-in-cell simulations, in good agreement with a large set of experimental results, indicate that proton acceleration is directly driven by Brunel electrons, in contrast to conventional target normal sheath acceleration that relies on electron thermal pressure
Proton acceleration from the interaction of ultra-short laser pulses with thin foil targets at inten...
This thesis experimentally investigates laser-driven proton acceleration in the regime of target nor...
In this thesis, various novel aspects of laser-driven ion acceleration with contrast-enhanced laser ...
International audienceExperimental measurements of backward accelerated protons are presented. The b...
We have investigated proton acceleration in the forward direction from a near-critical density hydro...
Bright proton beams with maximum energies of up to 30MeV have been observed in an experiment investi...
The production of polarized proton beams with multi-GeV energies in ultraintense laser interaction w...
International audienceWe use two-dimensional (2D) particle-in-cell simulations to study the interact...
Particle acceleration using ultraintense, ultrashort laser pulses is one of the most attractive topi...
The work described in this thesis is concerned with the experimental investigation of the accelerati...
The framework of this thesis is the investigation of the generation of proton beams using high-inten...
Laser-solid interaction can lead to the acceleration of protons to tens of MeV. Here, we show that a...
We experimentally investigated the accelerated proton beam characteristics such as maximum energy an...
Proton acceleration from the interaction of ultra-short laser pulses with thin foil targets at inten...
Proton acceleration from the interaction of ultra-short laser pulses with thin foil targets at inten...
This thesis experimentally investigates laser-driven proton acceleration in the regime of target nor...
In this thesis, various novel aspects of laser-driven ion acceleration with contrast-enhanced laser ...
International audienceExperimental measurements of backward accelerated protons are presented. The b...
We have investigated proton acceleration in the forward direction from a near-critical density hydro...
Bright proton beams with maximum energies of up to 30MeV have been observed in an experiment investi...
The production of polarized proton beams with multi-GeV energies in ultraintense laser interaction w...
International audienceWe use two-dimensional (2D) particle-in-cell simulations to study the interact...
Particle acceleration using ultraintense, ultrashort laser pulses is one of the most attractive topi...
The work described in this thesis is concerned with the experimental investigation of the accelerati...
The framework of this thesis is the investigation of the generation of proton beams using high-inten...
Laser-solid interaction can lead to the acceleration of protons to tens of MeV. Here, we show that a...
We experimentally investigated the accelerated proton beam characteristics such as maximum energy an...
Proton acceleration from the interaction of ultra-short laser pulses with thin foil targets at inten...
Proton acceleration from the interaction of ultra-short laser pulses with thin foil targets at inten...
This thesis experimentally investigates laser-driven proton acceleration in the regime of target nor...
In this thesis, various novel aspects of laser-driven ion acceleration with contrast-enhanced laser ...