English

Bright X-ray radiation from plasma bubbles in an evolving laser wakefield accelerator

Plasma Physics 2020-07-01 v3 Accelerator Physics

Abstract

We show that the properties of the electron beam and bright x-rays produced by a laser wakefield accelerator can be predicted if the distance over which the laser self-focuses and compresses prior to self-injection is taken into account. A model based on oscillations of the beam inside a plasma bubble shows that performance is optimised when the plasma length is matched to the laser depletion length. With a 200~TW laser pulse this results in an x-ray beam with median photon energy of \unit[20]{keV}, >6×108> 6\times 10^{8} photons above \unit[1]{keV} per shot and a peak brightness of \unit[3×1022]photons s1mrad2mm2(0.1%BW)1\unit[3 \times 10^{22}]{photons~s^{-1}mrad^{-2}mm^{-2} (0.1\% BW)^{-1}}.

Keywords

Cite

@article{arxiv.1710.05740,
  title  = {Bright X-ray radiation from plasma bubbles in an evolving laser wakefield accelerator},
  author = {M. S. Bloom and M. J. V. Streeter and S. Kneip and R. A. Bendoyro and O. Cheklov and J. M. Cole and A. Doepp and C. J. Hooker and J. Holloway and J. Jiang and N. C. Lopes and H. Nakamura and P. A. Norreys and P. P. Rajeev and D. R. Symes and J. Schreiber and J. C. Wood and M. Wing and Z. Najmudin and S. P. D. Mangles},
  journal= {arXiv preprint arXiv:1710.05740},
  year   = {2020}
}

Comments

5 pages, 4 figures

R2 v1 2026-06-22T22:15:10.535Z