Collimated jets of carbon and fluorine ions up to 5 MeV/nucleon (~100 MeV) are observed from the rear surface of thin foils irradiated with laser intensities of up to 5x1019W/cm2. The normally dominant proton acceleration could be surpressed by removing the hydrocarbon contaminants by resistive heating. This inhibits screening effects and permits effective energy transfer and acceleration of other ion species. The acceleration dynamics and the spatiotemporal distributions of the accelerating E fields at the rear surface of the target are inferred from the detailed spectra
International audienceWe report on the selective acceleration of carbon ions during the interaction ...
Abstract: Ion acceleration in the interaction of ultrashort intense laser pulses ( ~ 2×1019 W/cm2, ...
In this study, ion acceleration from thin planar target foils irradiated by ultrahigh-contrast (10(1...
Collimated jets of carbon and fluorine ions up to 5 MeV/nucleon (~100 MeV) are observed from the rea...
An experimental investigation of low- and medium-mass ion acceleration from resistively heated thin ...
An experimental investigation of low- and medium-mass ion acceleration from resistively heated thin ...
Ion acceleration driven by the interaction of an ultraintense (2x10^20 Wcm^-2) laser pulse with an u...
Experimental results on the acceleration of protons and carbon ions from ultra-thin polymer foils at...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
International audienceWe report on the selective acceleration of carbon ions during the interaction ...
Abstract: Ion acceleration in the interaction of ultrashort intense laser pulses ( ~ 2×1019 W/cm2, ...
In this study, ion acceleration from thin planar target foils irradiated by ultrahigh-contrast (10(1...
Collimated jets of carbon and fluorine ions up to 5 MeV/nucleon (~100 MeV) are observed from the rea...
An experimental investigation of low- and medium-mass ion acceleration from resistively heated thin ...
An experimental investigation of low- and medium-mass ion acceleration from resistively heated thin ...
Ion acceleration driven by the interaction of an ultraintense (2x10^20 Wcm^-2) laser pulse with an u...
Experimental results on the acceleration of protons and carbon ions from ultra-thin polymer foils at...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
International audienceWe report on the selective acceleration of carbon ions during the interaction ...
Abstract: Ion acceleration in the interaction of ultrashort intense laser pulses ( ~ 2×1019 W/cm2, ...
In this study, ion acceleration from thin planar target foils irradiated by ultrahigh-contrast (10(1...