X-Ray Pulse Compression using Stimulated Brillouin Scattering in Plasma

POSTER

Abstract

Stimulated Brillouin scattering may allow cleaning and compression of the output from x-ray free-electron lasers, producing coherent sub-femtosecond pulses with intensities orders-of-magnitude beyond current sources. In contrast to stimulated Raman scattering, which is limited by damping at short wavelengths, particle-in-cell simulations and analytic models suggest that amplification by Brillouin scattering is possible in solid-density plasma at the wavelengths and intensities of free-electron lasers. The nonlinear amplification process is robust to quasi-incoherence in the pump beam, permitting beam cleaning in addition to compression.\footnote{M. R. Edwards, J. M. Mikhailova, and N. J. Fisch, ``X-ray amplification by stimulated Brillouin scattering," arXiv:1705.08599, to appear in Phys. Rev. E (2017).}

*This work was supported by NNSA Grant No.~DENA0002948, AFOSR Grant No.~FA9550-15-1-0391, and NSF Grant No.~PHY 1506372. M.R.E.~acknowledges support from an NSF Graduate Research Fellowship.

Authors

  • Matthew Edwards

    • Princeton Univ
  • Julia Mikhailova

    • Princeton Univ
  • Nathaniel Fisch

    • Princeton University
    • Princeton Univ