Published February 2011
NDS Staff Publication
Simulations of neon irradiated by intense X-ray laser radiation
Description
We present simulations of the charge states produced by the interaction of intense X-ray laser radiation
with a neon gas. We model the results of a recent experiment (Young et al., Nature 466, 56 (2010)), where
mJ pulses of X-rays, with photon energies ranging from 800 to 2000 eV and pulse lengths ranging from
70 to 340 fs were incident on neon atoms at intensities of up to 1018 W cm2. Simulations using an
adapted version of the SCFLY collisional-radiative code, which included the effect of electron collisions
and a simple self-consistent temperature model, result in charge state distributions that are in good
agreement with the experimental data. We calculate the electron temperature of the system during the
evolution of the plasma, and comment upon the role that collisions may play in determining the charge
state distributions as a function of the neon ion number density.