An experimental investigation of low- and medium-mass ion acceleration from resistively heated thin foil targets, irradiated by picosecond laser pulses at intensities up to 5 × 1020 W cm−2, is reported. It is found that the spectral distributions of ions, up to multi-MeV/nucleon energies, accelerated from the rear surface of the target are broadly consistent with previously reported measurements made at intensities up to 5 × 1019 W cm−2. Properties of the backward-directed beams of ions accelerated from the target front surface are also measured, and it is found that, compared with the rear surface, higher ion numbers and charges, and similar ion energies are produced. Additionally, the scaling of the maximum ion energy as a function of ion...
We present the results of a detailed study on the acceleration of intense ion beams by relativistic ...
Proton acceleration using high-intensity laser pulses, at 1016 W/cm2 was studied irradiating differe...
Ion acceleration resulting from the interaction of ultra-high intensity (2 x 10(20) W/cm(2)) and ult...
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 ...
This thesis reports on experimental investigations into ion acceleration driven by high power laser ...
We present the experimental results on ion acceleration by petawatt femtosecond laser solid interact...
The acceleration of ions from ultrathin foils has been investigated by using 250 TW, subpicosecond l...
Proton beams laser accelerated from thin foils are studied for various plasma gradients on the foil ...
Collimated jets of carbon and fluorine ions up to 5 MeV/nucleon (~100 MeV) are observed from the rea...
The parameters of proton beams accelerated by a high-intensity short pulse laser from a thin foil ar...
The ability of relativistic laser pulses to accelerate ions from foil targets has long been establis...
A short overview of laser-plasma acceleration of ions is presented. The focus is on some recent expe...
Multi-MeV ion production from the interaction of a short laser pulse with a high-density plasma, acc...
Ion acceleration from solid targets irradiated by high-intensity laser pulses has been one of the mo...
We present the results of a detailed study on the acceleration of intense ion beams by relativistic ...
Proton acceleration using high-intensity laser pulses, at 1016 W/cm2 was studied irradiating differe...
Ion acceleration resulting from the interaction of ultra-high intensity (2 x 10(20) W/cm(2)) and ult...
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 ...
This thesis reports on experimental investigations into ion acceleration driven by high power laser ...
We present the experimental results on ion acceleration by petawatt femtosecond laser solid interact...
The acceleration of ions from ultrathin foils has been investigated by using 250 TW, subpicosecond l...
Proton beams laser accelerated from thin foils are studied for various plasma gradients on the foil ...
Collimated jets of carbon and fluorine ions up to 5 MeV/nucleon (~100 MeV) are observed from the rea...
The parameters of proton beams accelerated by a high-intensity short pulse laser from a thin foil ar...
The ability of relativistic laser pulses to accelerate ions from foil targets has long been establis...
A short overview of laser-plasma acceleration of ions is presented. The focus is on some recent expe...
Multi-MeV ion production from the interaction of a short laser pulse with a high-density plasma, acc...
Ion acceleration from solid targets irradiated by high-intensity laser pulses has been one of the mo...
We present the results of a detailed study on the acceleration of intense ion beams by relativistic ...
Proton acceleration using high-intensity laser pulses, at 1016 W/cm2 was studied irradiating differe...
Ion acceleration resulting from the interaction of ultra-high intensity (2 x 10(20) W/cm(2)) and ult...