For most laser-driven ion acceleration applications, a well-characterized intense ion beam with a low divergence and a controllable energy spectrum produced at a high repetition rate is needed. Gas-jet targets have given promising results in simulations, and they have several technical advantages for high-repetition-rate lasers. In this work, we report on proton acceleration to energies up to 6 MeV using a supersonic H2 gas-jet target at the LULI PICO2000 laser facility. The experimental results are compared with the plasma hydrodynamics and the particle-in-cell simulations to identify the acceleration mechanisms at play
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
For most laser-driven ion acceleration applications, a well-characterized intense ion beam with a lo...
For most applications of laser driven ion beams, a well-characterized high repetition rate intense i...
For most laser-driven ion acceleration applications, a well-characterized intense ion beam with a lo...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
For most laser-driven ion acceleration applications, a well-characterized intense ion beam with a lo...
For most applications of laser driven ion beams, a well-characterized high repetition rate intense i...
For most laser-driven ion acceleration applications, a well-characterized intense ion beam with a lo...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
International audienceFor most laser-driven ion acceleration applications, a well-characterized inte...
For most laser-driven ion acceleration applications, a well-characterized intense ion beam with a lo...
For most applications of laser driven ion beams, a well-characterized high repetition rate intense i...