English

Simulated Refraction-Enhanced X-Ray Radiography of Laser-Driven Shocks

Plasma Physics 2019-03-12 v1

Abstract

Refraction-enhanced x-ray radiography (REXR) is used to infer shock-wave positions of more than one shock wave, launched by a multiple-picket pulse in a planar plastic foil. This includes locating shock waves before the shocks merge, during the early time and the main drive of the laser pulse that is not possible with the velocity interferometer system for any reflector. Simulations presented in this paper of REXR show that it is necessary to incorporate refraction and attenuation of x rays along with the appropriate opacity and refractive-index tables to interpret experimental images. Simulated REXR shows good agreement with an experiment done on the OMEGA laser facility to image a shock wave. REXR can be applied to design multiple-picket pulses with a better understanding of the shock locations. This will be beneficial to obtain the required adiabats for inertial confinement fusion implosions.

Keywords

Cite

@article{arxiv.1903.04020,
  title  = {Simulated Refraction-Enhanced X-Ray Radiography of Laser-Driven Shocks},
  author = {Arnab Kar and T. R. Boehly and P. B. Radha and D. H. Edgell and S. X. Hu and P. M. Nilson and A. Shvydky and W. Theobald and D. Cao and K. S. Anderson and V. N. Goncharov and S. P. Regan},
  journal= {arXiv preprint arXiv:1903.04020},
  year   = {2019}
}