We report on experiments irradiating isolated plastic spheres with a peak laser intensity of 2-3 x 10(20) W cm(-2). With a laser focal spot size of 10 mu m full width half maximum (FWHM) the sphere diameter was varied between 520 nm and 19.3 mu m. Maximum proton energies of similar to 25 MeV are achieved for targets matching the focal spot size of 10 mu m in diameter or being slightly smaller. For smaller spheres the kinetic energy distributions of protons become nonmonotonic, indicating a change in the accelerating mechanism from ambipolar expansion towards a regime dominated by effects caused by Coulomb repulsion of ions. The energy conversion efficiency from laser energy to proton kinetic energy is optimized when the target diameter matc...
We report on recent experimental results deploying a continuous cryogenic hydrogen jet as a debris-f...
Acceleration of protons by transient strong electric fields formed with intense ultrashort laser pul...
International audienceWe report on some recent experimental results on proton production from ultra-...
Often, the interpretation of experiments concerning the manipulation of the energy distribution of l...
A coated hollow core microsphere is introduced as a novel target in ultra-intense laser-matter inter...
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...
Proton emission from 60-fs, 200-mJ high-repetition-rate tabletop-laser pulses interacting with solid...
A high-energy, high-yield proton beam with a good homogeneous profile has been generated from a nano...
Bright proton beams with maximum energies of up to 30MeV have been observed in an experiment investi...
A collimated beam of fast protons, with energies as high as 10 MeV and total number of 109, confined...
Recent breakthroughs in short pulse laser technology resulted in (i) generation of ultra-high intens...
We report systematic studies of laser-driven proton beams produced with micrometer-thick solid targe...
The laser-driven ion acceleration has been one of the most active areas of research during the last ...
We report on recent experimental results deploying a continuous cryogenic hydrogen jet as a debris-f...
Acceleration of protons by transient strong electric fields formed with intense ultrashort laser pul...
International audienceWe report on some recent experimental results on proton production from ultra-...
Often, the interpretation of experiments concerning the manipulation of the energy distribution of l...
A coated hollow core microsphere is introduced as a novel target in ultra-intense laser-matter inter...
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...
Proton emission from 60-fs, 200-mJ high-repetition-rate tabletop-laser pulses interacting with solid...
A high-energy, high-yield proton beam with a good homogeneous profile has been generated from a nano...
Bright proton beams with maximum energies of up to 30MeV have been observed in an experiment investi...
A collimated beam of fast protons, with energies as high as 10 MeV and total number of 109, confined...
Recent breakthroughs in short pulse laser technology resulted in (i) generation of ultra-high intens...
We report systematic studies of laser-driven proton beams produced with micrometer-thick solid targe...
The laser-driven ion acceleration has been one of the most active areas of research during the last ...
We report on recent experimental results deploying a continuous cryogenic hydrogen jet as a debris-f...
Acceleration of protons by transient strong electric fields formed with intense ultrashort laser pul...
International audienceWe report on some recent experimental results on proton production from ultra-...