English

Self-absorption of synchrotron radiation in a laser-irradiated plasma

Plasma Physics 2021-05-12 v2 High Energy Physics - Phenomenology

Abstract

Electrons at the surface of a plasma that is irradiated by a laser with intensity in excess of 1023 Wcm210^{23}~\mathrm{W}\mathrm{cm}^{-2} are accelerated so strongly that they emit bursts of synchrotron radiation. Although the combination of high photon and electron density and electromagnetic field strength at the plasma surface makes particle-particle interactions possible, these interactions are usually neglected in simulations of the high-intensity regime. Here we demonstrate an implementation of two such processes: photon absorption and stimulated emission. We show that, for plasmas that are opaque to the laser light, photon absorption would cause complete depletion of the multi-keV region of the synchrotron photon spectrum, unless compensated by stimulated emission. Our results motivate further study of the density dependence of QED phenomena in strong electromagnetic fields.

Keywords

Cite

@article{arxiv.2005.00302,
  title  = {Self-absorption of synchrotron radiation in a laser-irradiated plasma},
  author = {T. G. Blackburn and A. J. MacLeod and A. Ilderton and B. King and S. Tang and M. Marklund},
  journal= {arXiv preprint arXiv:2005.00302},
  year   = {2021}
}

Comments

20 pages, 4 figures; accepted version