English

Advances in QED with intense background fields

High Energy Physics - Phenomenology 2023-03-02 v2 High Energy Physics - Theory Plasma Physics

Abstract

Upcoming and planned experiments combining increasingly intense lasers and energetic particle beams will access new regimes of nonlinear, relativistic, quantum effects. This improved experimental capability has driven substantial progress in QED in intense background fields. We review here the advances made during the last decade, with a focus on theory and phenomenology. As ever higher intensities are reached, it becomes necessary to consider processes at higher orders in both the number of scattered particles and the number of loops, and to account for non-perturbative physics (e.g. the Schwinger effect), with extreme intensities requiring resummation of the loop expansion. In addition to increased intensity, experiments will reach higher accuracy, and these improvements are being matched by developments in theory such as in approximation frameworks, the description of finite-size effects, and the range of physical phenomena analysed. Topics on which there has been substantial progress include: radiation reaction, spin and polarisation, nonlinear quantum vacuum effects and connections to other fields including physics beyond the Standard Model.

Keywords

Cite

@article{arxiv.2203.00019,
  title  = {Advances in QED with intense background fields},
  author = {A. Fedotov and A. Ilderton and F. Karbstein and B. King and D. Seipt and H. Taya and G. Torgrimsson},
  journal= {arXiv preprint arXiv:2203.00019},
  year   = {2023}
}

Comments

Review article: 175 pages, 38 figures. To appear in Physics Reports

R2 v1 2026-06-24T09:56:53.949Z