Often, the interpretation of experiments concerning the manipulation of the energy distribution of laser-accelerated ion bunches is complicated by the multitude of competing dynamic processes simultaneously contributing to recorded ion signals. Here we demonstrate experimentally the acceleration of a clean proton bunch. This was achieved with a microscopic and three-dimensionally confined near critical density plasma, which evolves from a 1 mu m diameter plastic sphere, which is levitated and positioned with micrometer precision in the focus of a Petawatt laser pulse. The emitted proton bunch is reproducibly observed with central energies between 20 and 40 MeV and narrow energy spread (down to 25%) showing almost no low-energetic background...
We report on recent experimental results deploying a continuous cryogenic hydrogen jet as a debris-f...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
We report on our experiments on laser-driven ion acceleration using fully isolated mass-limited sphe...
Often, the interpretation of experiments concerning the manipulation of the energy distribution of l...
Often, the interpretation of experiments concerning the manipulation of the energy distribution of l...
We report on experiments irradiating isolated plastic spheres with a peak laser intensity of 2-3 x 1...
Modern particle accelerators are a key component of today’s research landscape and indispensable in ...
We have investigated proton acceleration in the forward direction from a near-critical density hydro...
The production of polarized proton beams with multi-GeV energies in ultraintense laser interaction w...
International audienceIt was recently shown that a promising way to accelerate protons in the forwar...
Laser accelerated protons can be a complimentary source for treatment of oncological diseases to the...
The laser-driven ion acceleration has been one of the most active areas of research during the last ...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
Bright proton beams with maximum energies of up to 30MeV have been observed in an experiment investi...
We report on recent experimental results deploying a continuous cryogenic hydrogen jet as a debris-f...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
We report on our experiments on laser-driven ion acceleration using fully isolated mass-limited sphe...
Often, the interpretation of experiments concerning the manipulation of the energy distribution of l...
Often, the interpretation of experiments concerning the manipulation of the energy distribution of l...
We report on experiments irradiating isolated plastic spheres with a peak laser intensity of 2-3 x 1...
Modern particle accelerators are a key component of today’s research landscape and indispensable in ...
We have investigated proton acceleration in the forward direction from a near-critical density hydro...
The production of polarized proton beams with multi-GeV energies in ultraintense laser interaction w...
International audienceIt was recently shown that a promising way to accelerate protons in the forwar...
Laser accelerated protons can be a complimentary source for treatment of oncological diseases to the...
The laser-driven ion acceleration has been one of the most active areas of research during the last ...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
Bright proton beams with maximum energies of up to 30MeV have been observed in an experiment investi...
We report on recent experimental results deploying a continuous cryogenic hydrogen jet as a debris-f...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
We report on our experiments on laser-driven ion acceleration using fully isolated mass-limited sphe...