English

Sequential terahertz pulse generation by photoionization and coherent transition radiation in underdense relativistic plasmas

Plasma Physics 2018-04-11 v1

Abstract

Terahertz (THz) emission by two-color, ultrashort optical pulses interacting with underdense helium gases at ultrahigh intensities (>1019W/cm2> 10^{19}\,\mathrm{W/cm}^2) is investigated by means of 3D particle-in-cell simulations. The THz field is shown to be produced by two mechanisms occurring sequentially, namely, photoionization-induced radiation (PIR) by the two-color pulse and coherent transition radiation (CTR) by the wakefield-accelerated electrons escaping the plasma. For plasmas of atomic densities >1017cm3> 10^{17}\,\mathrm{cm}^{-3}, CTR proves to be the dominant process, providing THz bursts with field strength as high as 100GV/m100\,\mathrm{GV/m} and energy in excess of 1mJ1\,\mathrm{mJ}. Analytical models are developed for both the PIR and CTR processes, which correctly reproduce the simulation data.

Keywords

Cite

@article{arxiv.1709.04639,
  title  = {Sequential terahertz pulse generation by photoionization and coherent transition radiation in underdense relativistic plasmas},
  author = {J. Déchard and A. Debayle and X. Davoine and L. Gremillet and L. Bergé},
  journal= {arXiv preprint arXiv:1709.04639},
  year   = {2018}
}

Comments

5 pages, 4 figures