English

Nuclear Charge Radius of $^{12}$Be

Atomic Physics 2015-06-04 v2 Nuclear Theory

Abstract

The nuclear charge radius of 12^{12}Be was precisely determined using the technique of collinear laser spectroscopy on the 2s1/22p1/2,3/22s_{1/2}\rightarrow 2p_{1/2, 3/2} transition in the Be+^{+} ion. The mean square charge radius increases from 10^{10}Be to 12^{12}Be by δ<rc2>10,12=0.69(5)\fm2\delta <r_{\rm c}^2>^{10,12} = 0.69(5) \fm^{2} compared to δ<rc2>10,11=0.49(5)\fm2\delta <r_{\rm c}^2>^{10,11} = 0.49(5) \fm^{2} for the one-neutron halo isotope 11^{11}Be. Calculations in the fermionic molecular dynamics approach show a strong sensitivity of the charge radius to the structure of 12^{12}Be. The experimental charge radius is consistent with a breakdown of the N=8 shell closure.

Keywords

Cite

@article{arxiv.1202.4873,
  title  = {Nuclear Charge Radius of $^{12}$Be},
  author = {Andreas Krieger and Klaus Blaum and Mark L. Bissell and Nadja Frömmgen and Christopher Geppert and Michael Hammen and Kim Kreim and Magdalena Kowalska and Jörg Krämer and Thomas Neff and Rainer Neugart and Gerda Neyens and Wilfried Nörtershäuser and Christian Novotny and Rodolfo Sanchez and Deyan T. Yordanov},
  journal= {arXiv preprint arXiv:1202.4873},
  year   = {2015}
}

Comments

5 pages, 3 figures

R2 v1 2026-06-21T20:23:21.114Z