English

Brilliant circularly polarized $\gamma$-ray sources via single-shot laser plasma interaction

Plasma Physics 2022-07-13 v1

Abstract

Circularly polarized (CP) γ\gamma-ray sources are versatile for broad applications in nuclear physics, high-energy physics and astrophysics. The laser-plasma based particle accelerators provide accessibility for much higher flux γ\gamma-ray sources than conventional approaches, in which, however, the circular polarization properties of emitted γ\gamma-photons are used to be neglected. In this letter, we show that brilliant CP γ\gamma-ray beams can be generated via the combination of laser plasma wakefield acceleration and plasma mirror techniques. In weakly nonlinear Compton scattering scheme with moderate laser intensities, the helicity of the driving laser can be transferred to the emitted γ\gamma-photons, and their average polarization degree can reach about 37%\sim 37\% (21%21\%) with a peak brilliance of 1021 \gtrsim 10^{21}~photons/(s \cdot mm2^2 \cdot mrad2^2 \cdot 0.1% BW) around 1~MeV (100~MeV). Moreover, our proposed method is easily feasible and robust with respect to the laser and plasma parameters.

Keywords

Cite

@article{arxiv.2111.11012,
  title  = {Brilliant circularly polarized $\gamma$-ray sources via single-shot laser plasma interaction},
  author = {Yu Wang and Mamutjan Ababekri and Feng Wan and Qian Zhao and Chong Lv and Xue-Guang Ren and Zhong-Feng Xu and Yong-Tao Zhao and Jian-Xing Li},
  journal= {arXiv preprint arXiv:2111.11012},
  year   = {2022}
}