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October 2, 2000Physical Review Letters1,699 citations

Intense High-Energy Proton Beams from Petawatt-Laser Irradiation of Solids

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RSR. A. SnavelyMKM. H. KeySHS. P. Hatchett

Key Points

  • This research aims to investigate the emission of high-energy protons from solid targets under intense laser irradiation.
  • Targets were irradiated at 1 PW power and peak intensity of 3x10(20) W cm(-2).
  • Proton emission was measured normal to the rear surface of the targets.
  • Proton induced nuclear processes were characterized to understand beam properties.
  • Up to 48 J (12%) of laser energy was transferred to 2x10(13) protons of energy >10 MeV.
  • The energy spectrum of protons showed a sharp high-energy cutoff at 58 MeV along the beam axis.
  • Energy decreased with increasing off-axis angle, demonstrating beam collimation.

Abstract

An intense collimated beam of high-energy protons is emitted normal to the rear surface of thin solid targets irradiated at 1 PW power and peak intensity 3x10(20) W cm(-2). Up to 48 J ( 12%) of the laser energy is transferred to 2x10(13) protons of energy >10 MeV. The energy spectrum exhibits a sharp high-energy cutoff as high as 58 MeV on the axis of the beam which decreases in energy with increasing off axis angle. Proton induced nuclear processes have been observed and used to characterize the beam.

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Cite This Study

Snavely et al. (2000) studied this question.

synapsesocial.com/papers/69dcb031a5c75be4cfe536e2https://doi.org/10.1103/physrevlett.85.2945
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