Target Normal Sheath Acceleration method was employed at PALS to accelerate ions from laser-generated plasma at intensities above 1015 W/cm2. Laser parameters, irradiation conditions and target geometry and composition control the plasma properties and the electric field driving the ion acceleration. Cu nanoparticles deposited on the polymer promote resonant absorption effects increasing the plasma electron density and enhancing the proton acceleration. Protons can be accelerated in forward direction at kinetic energies up to about 3.5 MeV. The optimal target thickness, the maximum acceleration energy and the angular distribution of emitted particles have been measured using ion collectors, X-ray CCD streak camera, SiC detectors and Thomson...
Accelerating ions/protons can be done using short laser pulse (few femtoseconds) focused on few micr...
We report on experimental investigations of ion acceleration from thin foil targets irradiated with ...
AbstractProton ion acceleration via laser-generated plasma is investigated at relatively low laser p...
Target Normal Sheath Acceleration method was employed at PALS to accelerate ions from laser-generate...
Abstract Nanostructured targets, based on hydrogenated polymers with embedded nanost...
Metallic nanoparticles have been obtained by 10$10$ W/cm$2$ Nd:YAg laser ablation in liquid at diffe...
Advanced targets based on Au nanoparticles embedded in polymers films show high absorption coeffi- c...
Thin films of hydrogenated materials have been prepared, at Messina University, to be irradiated by ...
Proton acceleration can be induced by non-equilibrium plasma developed by high-intensity laser pulse...
Many parameters of non-equilibrium plasma generated by high intensity and fast lasers depend on the ...
High-intensity ultrashort laser pulses focusedon metal targets readily generate hot dense plasmas wh...
fs pulsed lasers at an intensity of the order of 1018 W/cm2, with a contrast of 10−5, were employed ...
Laser-generated plasmas in vacuum were obtained by ablating hydrogenated polymers at the Physics Dep...
Polyethylene-based thin targets were irradiated in high vacuum in the TNSA (Target Normal Sheath Acc...
The measurements reported here provide scaling laws for the acceleration process in the ultra-short ...
Accelerating ions/protons can be done using short laser pulse (few femtoseconds) focused on few micr...
We report on experimental investigations of ion acceleration from thin foil targets irradiated with ...
AbstractProton ion acceleration via laser-generated plasma is investigated at relatively low laser p...
Target Normal Sheath Acceleration method was employed at PALS to accelerate ions from laser-generate...
Abstract Nanostructured targets, based on hydrogenated polymers with embedded nanost...
Metallic nanoparticles have been obtained by 10$10$ W/cm$2$ Nd:YAg laser ablation in liquid at diffe...
Advanced targets based on Au nanoparticles embedded in polymers films show high absorption coeffi- c...
Thin films of hydrogenated materials have been prepared, at Messina University, to be irradiated by ...
Proton acceleration can be induced by non-equilibrium plasma developed by high-intensity laser pulse...
Many parameters of non-equilibrium plasma generated by high intensity and fast lasers depend on the ...
High-intensity ultrashort laser pulses focusedon metal targets readily generate hot dense plasmas wh...
fs pulsed lasers at an intensity of the order of 1018 W/cm2, with a contrast of 10−5, were employed ...
Laser-generated plasmas in vacuum were obtained by ablating hydrogenated polymers at the Physics Dep...
Polyethylene-based thin targets were irradiated in high vacuum in the TNSA (Target Normal Sheath Acc...
The measurements reported here provide scaling laws for the acceleration process in the ultra-short ...
Accelerating ions/protons can be done using short laser pulse (few femtoseconds) focused on few micr...
We report on experimental investigations of ion acceleration from thin foil targets irradiated with ...
AbstractProton ion acceleration via laser-generated plasma is investigated at relatively low laser p...