English

Nuclear deformation effect on the binding energies in heavy ions

Atomic Physics 2009-11-13 v1

Abstract

Nuclear deformation effects on the binding energies in heavy ions are investigated. Approximate formulas for the nuclear-size correction and the isotope shift for deformed nuclei are derived. Combined with direct numerical evaluations, these formulas are employed to reanalyse experimental data on the nuclear-charge-distribution parameters in 238U^{238}\textrm{U} and to revise the nuclear-size corrections to the binding energies in H- and Li-like 238U^{238}\textrm{U}. As a result, the theoretical uncertainties for the ground-state Lamb shift in 238U91+^{238}\textrm{U}^{91+} and for the 2p1/22s2p_{1/2}-2s transition energy in 238U89+^{238}\textrm{U}^{89+} are significantly reduced. The isotope shift of the 2pj2s2p_{j}-2s transition energies for 142Nd57+^{142}\textrm{Nd}^{57+} and 150Nd57+^{150}\textrm{Nd}^{57+} is also evaluated including nuclear size and nuclear recoil effects within a full QED treatment.

Keywords

Cite

@article{arxiv.0711.4607,
  title  = {Nuclear deformation effect on the binding energies in heavy ions},
  author = {Y. S. Kozhedub and O. V. Andreev and V. M. Shabaev and I. I. Tupitsyn and C. Brandau and C. Kozhuharov and G. Plunien and T. Stohlker},
  journal= {arXiv preprint arXiv:0711.4607},
  year   = {2009}
}

Comments

19 pages, 5 tables

R2 v1 2026-06-21T09:48:26.280Z