AIP Advances (May 2018)

Electron dynamics in high energy density plasma bunch generation driven by intense picosecond laser pulse

  • M. Li,
  • T. Yuan,
  • Y. X. Xu,
  • S. N. Luo

DOI
https://doi.org/10.1063/1.5023283
Journal volume & issue
Vol. 8, no. 5
pp. 055012 – 055012-6

Abstract

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When an intense picosecond laser pulse is loaded upon a dense plasma, a high energy density plasma bunch, including electron bunch and ion bunch, can be generated in the target. We simulate this process through one-dimensional particle-in-cell simulation and find that the electron bunch generation is mainly due to a local high energy density electron sphere originated in the plasma skin layer. Once generated the sphere rapidly expands to compress the surrounding electrons and induce high density electron layer, coupled with that, hot electrons are efficiently triggered in the local sphere and traveling in the whole target. Under the compressions of light pressure, forward-running and backward-running hot electrons, a high energy density electron bunch generates. The bunch energy density is as high as TJ/m3 order of magnitude in our conditions, which is significant in laser driven dynamic high pressure generation and may find applications in high energy density physics.