English

Single and double $K$-shell vacancy production in slow Xe$^\textrm{54+,53+}$-Xe collisions

Atomic Physics 2022-02-14 v1

Abstract

We present an experimental and theoretical study of symmetric Xe54++Xe\textrm{Xe}^{54+}+\textrm{Xe} collisions at 50, 30, and 15 MeV/u, corresponding to strong perturbations with vK/vpv_K/v_\text{p} = 1.20, 1.55, and 2.20, respectively (vKv_K: classical KK-shell orbital velocity, vpv_\text{p}: projectile velocity), as well as Xe53++Xe\textrm{Xe}^{53+}+\textrm{Xe} collisions at 15 MeV/u. For each of these systems, x-ray spectra were measured under a forward angle of 3535^\circ with respect to the projectile beam. Target satellite and hypersatellite radiation, Kα2,1sK\alpha_{2,1}^\mathrm{s} and Kα2,1hsK\alpha_{2,1}^\mathrm{hs}, respectively, were analyzed and used to derive cross section ratios for double-to-single target KK-shell vacancy production. We compare our experimental results to relativistic time-dependent two-center calculations.

Keywords

Cite

@article{arxiv.2201.10181,
  title  = {Single and double $K$-shell vacancy production in slow Xe$^\textrm{54+,53+}$-Xe collisions},
  author = {P. -M. Hillenbrand and S. Hagmann and Y. S. Kozhedub and E. P. Benis and C. Brandau and R. J. Chen and D. Dmytriiev and O. Forstner and J. Glorius and R. E. Grisenti and A. Gumberidze and M. Lestinsky and Yu. A. Litvinov and E. B. Menz and T. Morgenroth and S. Nanos and N. Petridis and Ph. Pfäfflein and H. Rothard and M. S. Sanjari and R. S. Sidhu and U. Spillmann and S. Trotsenko and I. I. Tupitsyn and L. Varga and Th. Stöhlker},
  journal= {arXiv preprint arXiv:2201.10181},
  year   = {2022}
}

Comments

8 pages, 4 figures