English

Non-invasive characterisation of a laser-driven positron beam

Plasma Physics 2020-05-20 v1 Accelerator Physics

Abstract

We report on an indirect and non-invasive method to simultaneously characterise the energy-dependent emittance and source size of ultra-relativistic positron beams generated during the propagation of a laser-wakefield accelerated electron beam through a high-Z converter target. The strong correlation of the geometrical emittance of the positrons with that of the scattered electrons allows the former to be inferred, with high accuracy, from monitoring the latter. The technique has been tested in a proof-of-principle experiment where, for 100 MeV positrons, we infer geometrical emittances and source sizes of the order of ϵe+\epsilon_{e^+} \approx 3 μ\mum and De+D_{e^+} \approx 150 μ\mum, respectively. This is consistent with the numerically predicted possibility of achieving sub-μ\mum geometrical emittances and micron-scale source sizes at the GeV level.

Keywords

Cite

@article{arxiv.2002.09986,
  title  = {Non-invasive characterisation of a laser-driven positron beam},
  author = {Aaron Alejo and Guillermo Marrero Samarin and Richard Warwick and Connor McCluskey and Giada Cantono and Tiberio Ceccotti and Sandrine Dosbosz Dufrenoy and Pascal Monot and Gianluca Sarri},
  journal= {arXiv preprint arXiv:2002.09986},
  year   = {2020}
}

Comments

7 pages, 5 figures

R2 v1 2026-06-23T13:50:59.755Z