Radii and binding energies in oxygen isotopes: a puzzle for nuclear forces
arXiv:1605.07885 · doi:10.1103/PhysRevLett.117.052501
Abstract
We present a systematic study of both nuclear radii and binding energies in (even) oxygen isotopes from the valley of stability to the neutron drip line. Both charge and matter radii are compared to state-of-the-art {\it ab initio} calculations along with binding energy systematics. Experimental matter radii are obtained through a complete evaluation of the available elastic proton scattering data of oxygen isotopes. We show that, in spite of a good reproduction of binding energies, {\it ab initio} calculations with conventional nuclear interactions derived within chiral effective field theory fail to provide a realistic description of charge and matter radii. A novel version of two- and three-nucleon forces leads to considerable improvement of the simultaneous description of the three observables for stable isotopes, but shows deficiencies for the most neutron-rich systems. Thus, crucial challenges related to the development of nuclear interactions remain.
6 pages, 5 figures, Submitted to Nature Physics, April 12th 2016; first version (v1 Arxiv) Internal Report Preprint Irfu-18 December 2015. 6 p., 5 fig., Submitted to Physical Review Letters, April 29, May 3rd 2016; 2nd version. Int. Rep. Irfu-24 May 2016. Published in PRL, 27 July 2016 with the modified title (Radii and binding energies in oxygen isotopes: a challenge for nuclear forces)
References in corpus (12)
- Chiral effective field theory and nuclear forces
- Improved nuclear matter calculations from chiral low-momentum interactions
- Accurate nuclear radii and binding energies from a chiral interaction
- Similarity Renormalization Group for Nucleon-Nucleon Interactions
- Local three-nucleon interaction from chiral effective field theory
- In-Medium Similarity Renormalization Group for Nuclei
- Ab Initio Multi-Reference In-Medium Similarity Renormalization Group Calculations of Even Calcium and Nickel Isotopes
- Three-nucleon forces and spectroscopy of neutron-rich calcium isotopes
- Ab initio Bogoliubov coupled cluster theory for open-shell nuclei
- Three-body forces and proton-rich nuclei
- Symmetry broken and restored coupled-cluster theory I. Rotational symmetry and angular momentum
- 2014 Update of the Discoveries of Nuclides
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