Physical Review Special Topics. Accelerators and Beams (Nov 2015)

Polarization of x-gamma radiation produced by a Thomson and Compton inverse scattering

  • V. Petrillo,
  • A. Bacci,
  • C. Curatolo,
  • I. Drebot,
  • A. Giribono,
  • C. Maroli,
  • A. R. Rossi,
  • L. Serafini,
  • P. Tomassini,
  • C. Vaccarezza,
  • A. Variola

DOI
https://doi.org/10.1103/PhysRevSTAB.18.110701
Journal volume & issue
Vol. 18, no. 11
p. 110701

Abstract

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A systematic study of the polarization of x-gamma rays produced in Thomson and Compton scattering is presented, in both classical and quantum schemes. Numerical results and analytical considerations let us to establish the polarization level as a function of acceptance, bandwidth and energy. Few sources have been considered: the SPARC_LAB Thomson device, as an example of a x-ray Thomson source, ELI-NP, operating in the gamma range. Then, the typical parameters of a beam produced by a plasma accelerator has been analyzed. In the first case, with bandwidths up to 10%, a contained reduction (<10%) in the average polarization occurs. In the last case, for the nominal ELI-NP relative bandwidth of 5×10^{-3}, the polarization is always close to 1. For applications requiring larger bandwidth, however, a degradation of the polarization up to 30% must be taken into account. In addition, an all optical gamma source based on a plasma accelerated electron beam cannot guarantee narrow bandwidth and high polarization operational conditions required in nuclear photonics experiments.