Neutron Skins and Halo Orbits in the and shells
arXiv:1601.02168 · doi:10.1103/PhysRevLett.116.212501
Abstract
The strong dependence of Coulomb energies on nuclear radii makes it possible to extract the latter from calculations of the former. The resulting estimates of neutron skins indicate that two mechanisms are involved. The first one---isovector monopole polarizability---amounts to noting that when a particle is added to a system it drives the radii of neutrons and protons in different directions, tending to equalize the radii of both fluids independently of the neutron excess. This mechanism is well understood and the Duflo-Zuker (small) neutron skin values derived 14 years ago are consistent with recent measures and estimates. The alternative mechanism involves halo orbits whose huge sizes tend to make the neutron skins larger and have a subtle influence on the radial behavior of and shell nuclei. In particular, they account for the sudden rise in the isotope shifts of nuclei beyond and the near constancy of radii in the region. This mechanism, detected here for the first time, is not well understood and may well go beyond Efimov physics usually associated to halo orbits.
4 pages, 4 figures
References in corpus (5)
- Unexpectedly large charge radii of neutron-rich calcium isotopes
- Charge, neutron, and weak size of the atomic nucleus
- The neutron skin thickness from the measured electric dipole polarizability in Ni, Sn, and Pb
- Analysis of bulk and surface contributions in the neutron skin of nuclei
- Thomas-Ehrman effect in a three-body model: Ne case
Cited by in corpus (9)
- Laser Spectroscopy for the Study of Exotic Nuclei
- Nuclear charge radii: Density functional theory meets Bayesian neural networks
- The Neutron-Rich Edge of the Nuclear Landscape. Experiment and Theory
- Changes in nuclear structure along the Mn isotopic chain studied via charge radii
- Broken mirror symmetry in S and Ca
- Isospin symmetry breaking in the mirror pair Sr-Br
- Spectroscopic factors of resonance states with the Gamow shell model
- Radii in the shell and the "halo" orbit: A game changer
- Universal Effective Charges in the and Shells