English

Bounding elastic photon-photon scattering at $\sqrt s \approx 1\,$MeV using a laser-plasma platform

High Energy Physics - Experiment 2025-02-05 v2 High Energy Physics - Phenomenology Plasma Physics

Abstract

We report on a direct search for elastic photon-photon scattering using x-ray and γ\gamma photons from a laser-plasma based experiment. A gamma photon beam produced by a laser wakefield accelerator provided a broadband gamma spectrum extending to above Eγ=200E_\gamma = 200 MeV. These were collided with a dense x-ray field produced by the emission from a laser heated germanium foil at Ex1.4E_x \approx 1.4 keV, corresponding to an invariant mass of s=1.22±0.22\sqrt{s} = 1.22 \pm 0.22 MeV. In these asymmetric collisions elastic scattering removes one x-ray and one high-energy γ\gamma photon and outputs two lower energy γ\gamma photons. No changes in the γ\gamma photon spectrum were observed as a result of the collisions allowing us to place a 95% upper bound on the cross section of 1.5×1015μ1.5 \times 10^{15}\,\mub. Although far from the QED prediction, this represents the lowest upper limit obtained so far for s1\sqrt{s} \lesssim 1 MeV.

Keywords

Cite

@article{arxiv.2407.12915,
  title  = {Bounding elastic photon-photon scattering at $\sqrt s \approx 1\,$MeV using a laser-plasma platform},
  author = {R. Watt and B. Kettle and E. Gerstmayr and B. King and A. Alejo and S. Astbury and C. Baird and S. Bohlen and M. Campbell and C. Colgan and D. Dannheim and C. Gregory and H. Harsh and P. Hatfield and J. Hinojosa and D. Hollatz and Y. Katzir and J. Morton and C. D. Murphy and A. Nurnberg and J. Osterhoff and G. Pérez-Callejo and K. Põder and P. P. Rajeev and C. Roedel and F. Roeder and F. C. Salgado and G. M. Samarin and G. Sarri and A. Seidel and C. Spindloe and S. Steinke and M. J. V. Streeter and A. G. R. Thomas and C. Underwood and W. Wu and M. Zepf and S. J. Rose and S. P. D. Mangles},
  journal= {arXiv preprint arXiv:2407.12915},
  year   = {2025}
}

Comments

9 pages, 7 figures

R2 v1 2026-06-28T17:45:01.542Z