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Production of high-intensity proton fluxes by a 2ω Nd:glass laser beam

  • J. Badziak
  • , S. Jabłoński
  • , P. Parys
  • , A. Szydłowski
  • , J. Fuchs
  • , A. Mancic
  • Soltan Institute for Nuclear Studies

Research output: Contribution to journalArticlepeer-review

Abstract

The results of numerical and experimental studies of high-intensity proton beam generation using a 2ω or 1ω Nd:glass laser beam irradiating a thin hydrogen-rich target are reported. The effect of the laser wavelength (λ), intensity (IL) and pulse duration as well as the target thickness, and the preplasma density gradient scale length on proton beam parameters, and the laser-protons energy conversion efficiency were examined by particle-in-cell simulations. Both the simulations and measurements, performed on the LULI 100 TW laser facility at IL up to 21019W/cm2, prove that at the ILλ2 product fixed, the 2ω laser driver can produce proton beams of intensity, current density and energy fluence significantly higher than the ones which could be achieved using the 1 driver. In particular, at IL2~(0.5-1)1020 Wcm-2 μm2 the 2ω picosecond driver makes it possible to generate multi-MeV proton beams of intensity and current density in excess of 1021W/cm2 and 1014A/cm2, respectively, with the conversion efficiency above 10%.

Original languageEnglish
Pages (from-to)575-583
Number of pages9
JournalLaser and Particle Beams
Volume28
Issue number4
DOIs
Publication statusPublished - 1 Dec 2010

Keywords

  • Laser-driven ion acceleration
  • Laser-produced plasma
  • Ponderomotive force
  • Proton beams
  • Radiation pressure

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