New Journal of Physics (Jan 2022)

Spatial profile of accelerated electrons from ponderomotive scattering in hydrogen cluster targets

  • B Aurand,
  • L Reichwein,
  • K M Schwind,
  • E Aktan,
  • M Cerchez,
  • V Kaymak,
  • L Lessmann,
  • R Prasad,
  • J Thomas,
  • T Toncian,
  • A Khoukaz,
  • A Pukhov,
  • O Willi

DOI
https://doi.org/10.1088/1367-2630/ac53ba
Journal volume & issue
Vol. 24, no. 3
p. 033006

Abstract

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We study the laser-driven acceleration of electrons from overdense hydrogen clusters to energies of up to 13 MeV in laser forward direction and several hundreds of keV in an outer ring-structure. The use of cryogenic hydrogen allows for high repetition-rate operation and examination of the influence of source parameters like temperature and gas flow. The outer ring-structure of accelerated electrons, originating from the interaction, that is robust against the change of laser and target parameters can be observed for low electron densities of ca 3 × 10 ^16 cm ^−3 . For higher electron densities, an additional central spot of electrons in the laser forward direction can be observed. Utilizing 3D particle-in-cell simulations, it is revealed that both electron populations mainly stem from ponderomotive scattering.

Keywords