International audienceWe report on the selective acceleration of carbon ions during the interaction of ultrashort, circularly polarized and contrast-enhanced laser pulses, at a peak intensity of 5.5×1020 W/cm2, with ultrathin carbon foils. Under optimized conditions, energies per nucleon of the bulk carbon ions reached significantly higher values than the energies of contaminant protons (33 MeV/nucleon vs 18 MeV), unlike what is typically observed in laser-foil acceleration experiments. Experimental data, and supporting simulations, emphasize different dominant acceleration mechanisms for the two ion species and highlight an (intensity dependent) optimum thickness for radiation pressure acceleration; it is suggested that the preceding las...
We present experimental results on ion acceleration with circularly polarized, ultrahigh contrast la...
Experiments on ion acceleration by irradiation of ultra-thin diamond-like carbon (DLC) foils, with t...
We report the experimental generation of highly energetic carbon ions up to 48 MeV per nucleon by sh...
International audienceWe report on the selective acceleration of carbon ions during the interaction ...
We report on the selective acceleration of carbon ions during the interaction of ultrashort, circula...
International audienceThe acceleration of ions from ultrathin (10–100 nm) carbon foils has been inve...
We present experimental studies on ion acceleration from ultrathin diamondlike carbon foils irradiat...
Experimental results on the acceleration of protons and carbon ions from ultra-thin polymer foils at...
The acceleration of ions from ultrathin (10-100 nm) carbon foils has been investigated using intense...
In this study, ion acceleration from thin planar target foils irradiated by ultrahigh-contrast (10(1...
Experiments investigating ion acceleration from laser-irradiated ultra-thin foils on the GEMINI lase...
Experimental results on the acceleration of protons and carbonions from ultra-thin polymer foils at ...
The acceleration of ions from ultrathin foils has been investigated by using 250 TW, subpicosecond l...
We present experimental results on ion acceleration with circularly polarized, ultrahigh contrast la...
Experiments on ion acceleration by irradiation of ultra-thin diamond-like carbon (DLC) foils, with t...
We report the experimental generation of highly energetic carbon ions up to 48 MeV per nucleon by sh...
International audienceWe report on the selective acceleration of carbon ions during the interaction ...
We report on the selective acceleration of carbon ions during the interaction of ultrashort, circula...
International audienceThe acceleration of ions from ultrathin (10–100 nm) carbon foils has been inve...
We present experimental studies on ion acceleration from ultrathin diamondlike carbon foils irradiat...
Experimental results on the acceleration of protons and carbon ions from ultra-thin polymer foils at...
The acceleration of ions from ultrathin (10-100 nm) carbon foils has been investigated using intense...
In this study, ion acceleration from thin planar target foils irradiated by ultrahigh-contrast (10(1...
Experiments investigating ion acceleration from laser-irradiated ultra-thin foils on the GEMINI lase...
Experimental results on the acceleration of protons and carbonions from ultra-thin polymer foils at ...
The acceleration of ions from ultrathin foils has been investigated by using 250 TW, subpicosecond l...
We present experimental results on ion acceleration with circularly polarized, ultrahigh contrast la...
Experiments on ion acceleration by irradiation of ultra-thin diamond-like carbon (DLC) foils, with t...
We report the experimental generation of highly energetic carbon ions up to 48 MeV per nucleon by sh...