English

Single-shot multi-keV X-ray absorption spectroscopy using an ultrashort laser wakefield accelerator source

Plasma Physics 2019-12-25 v2 Instrumentation and Detectors

Abstract

Single-shot absorption measurements have been performed using the multi-keV X-rays generated by a laser wakefield accelerator. A 200 TW laser was used to drive a laser wakefield accelerator in a mode which produced broadband electron beams with a maximum energy above 1 GeV and a broad divergence of 15\approx15 miliradians FWHM. Betatron oscillations of these electrons generated 1.2±0.2×1061.2\pm0.2\times10^6 photons/eV in the 5 keV region, with a signal-to-noise ratio of approximately 300:1. This was sufficient to allow high-resolution XANES measurements at the K-edge of a titanium sample in a single shot. We demonstrate that this source is capable of single-shot, simultaneous measurements of both the electron and ion distributions in matter heated to eV temperatures by comparison with DFT simulations. The unique combination of a high-flux, large bandwidth, few femtosecond duration X-ray pulse synchronised to a high-power laser will enable key advances in the study of ultra-fast energetic processes such as electron-ion equilibration.

Keywords

Cite

@article{arxiv.1907.10167,
  title  = {Single-shot multi-keV X-ray absorption spectroscopy using an ultrashort laser wakefield accelerator source},
  author = {B. Kettle and E. Gerstmayr and M. J. V. Streeter and F. Albert and R. A. Baggott and N. Bourgeois and J. M. Cole and S. Dann and K. Falk and I. Gallardo González and A. E. Hussein and N. Lemos and N. C. Lopes and O. Lundh and Y. Ma and S. J. Rose and C. Spindloe and D. R. Symes and M. Šmíd and A. G. R. Thomas and R. Watt and S. P. D. Mangles},
  journal= {arXiv preprint arXiv:1907.10167},
  year   = {2019}
}

Comments

6 pages and 4 figures in main text, 3 pages and 4 figures in supplementary material

R2 v1 2026-06-23T10:28:53.500Z