We report on the successful implementation and characterization of a cryogenic solid hydrogen target in experiments on high-power laser-driven proton acceleration. When irradiating a solid hydrogen filament of 10 μm diameter with 10-Terawatt laser pulses of 2.5 J energy, protons with kinetic energies in excess of 20 MeV exhibiting non-thermal features in their spectrum were observed. The protons were emitted into a large solid angle reaching a total conversion efficiency of several percent. Two-dimensional particle-in-cell simulations confirm our results indicating that the spectral modulations are caused by collisionless shocks launched from the surface of the the high-density filament into a low-density corona surrounding the target. The ...
International audienceIt was recently shown that a promising way to accelerate protons in the forwar...
The laser-driven ion acceleration has been one of the most active areas of research during the last ...
Relativistic laser-driven plasmas can be the source of energetic proton beams and have received incr...
A high-power pulsed laser is focused onto a solid-hydrogen target to accelerate forward a collimated...
We theoretically investigate high energy, collimated proton beam with three dimensional particle in ...
We report on recent experimental results deploying a continuous cryogenic hydrogen jet as a debris-f...
Laser driven proton acceleration experiments from micron and submicron thick targets using high inte...
We report on recent experimental results deploying a continuous cryogenic hydrogen jet as a debris-f...
Modern particle accelerators are a key component of today’s research landscape and indispensable in ...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
Experimental results are reported for two different configurations of laser driven ion acceleration ...
International audienceIt was recently shown that a promising way to accelerate protons in the forwar...
The laser-driven ion acceleration has been one of the most active areas of research during the last ...
Relativistic laser-driven plasmas can be the source of energetic proton beams and have received incr...
A high-power pulsed laser is focused onto a solid-hydrogen target to accelerate forward a collimated...
We theoretically investigate high energy, collimated proton beam with three dimensional particle in ...
We report on recent experimental results deploying a continuous cryogenic hydrogen jet as a debris-f...
Laser driven proton acceleration experiments from micron and submicron thick targets using high inte...
We report on recent experimental results deploying a continuous cryogenic hydrogen jet as a debris-f...
Modern particle accelerators are a key component of today’s research landscape and indispensable in ...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
Experimental results are reported for two different configurations of laser driven ion acceleration ...
International audienceIt was recently shown that a promising way to accelerate protons in the forwar...
The laser-driven ion acceleration has been one of the most active areas of research during the last ...
Relativistic laser-driven plasmas can be the source of energetic proton beams and have received incr...