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POLYMERS CONTAINING Cu NANOPARTICLES IRRADIATED BY LASER TO ENHANCE THE ION ACCELERATION

M. CutroneoNuclear Physics Institute, ASCR, 25068 RezL. TorrisiPhysics Department and Earth Sciences, Messina University, V.le F.S. d'Alcontres 31, 98166 S. Agata, MessinaAnna MackováNuclear Physics Institute, ASCR, 25068 RezA. VelyhanInstitute of Physics, ASCR, v.v.i., 18221 Prague 8
Acta Polytechnicajournal2015en
ABI

Abstract

<p>Target Normal Sheath Acceleration method was employed at PALS to accelerate ions from laser-generated plasma at intensities above 10<sup>15 </sup>W/cm<sup>2</sup>. 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 Parabola Spectrometer.</p>

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