English

Ultra-high brilliance multi-MeV $\gamma$-ray beam from non-linear Thomson scattering

Optics 2015-06-22 v1 Plasma Physics

Abstract

We report on the generation of a narrow divergence (θ2.5\theta\approx 2.5 mrad), multi-MeV (EMAX=18E_\text{MAX} = 18 MeV) and ultra-high brilliance (2×1019\approx 2\times10^{19} photons s1^{-1} mm2^{-2} mrad 2^{-2} 0.1\% BW) γ\gamma-ray beam from the scattering of an ultra-relativistic laser-wakefield accelerated electron beam in the field of a relativistically intense laser (dimensionless amplitude a02a_0\approx2). The spectrum of the generated γ\gamma-ray beam is measured, with MeV resolution, seamlessly from 6 MeV to 18 MeV, giving clear evidence of the onset of non-linear Thomson scattering. The photon source has the highest brilliance in the multi-MeV regime ever reported in the literature.

Keywords

Cite

@article{arxiv.1407.6980,
  title  = {Ultra-high brilliance multi-MeV $\gamma$-ray beam from non-linear Thomson scattering},
  author = {G. Sarri and D. J. Corvan and W. Schumaker and J. Cole and A. Di Piazza and H. Ahmed and C. Harvey and C. H. Keitel and K. Krushelnick and S. P. D. Mangles and Z. Najmudin and D. Symes and A. G. R. Thomas and M. Yeung and Z. Zhao and M. Zepf},
  journal= {arXiv preprint arXiv:1407.6980},
  year   = {2015}
}