English

Nuclear structure studies of $^{24}$F

Nuclear Experiment 2015-01-07 v1 Nuclear Theory

Abstract

The structure of the 24^{24}F nucleus has been studied at GANIL using the β\beta decay of 24^{24}O and the in-beam γ\gamma-ray spectroscopy from the fragmentation of projectile nuclei. Combining these complementary experimental techniques, the level scheme of 24^{24}F has been constructed up to 3.6 Mev by means of particle-γ\gamma and particle-γγ\gamma\gamma coincidence relations. Experimental results are compared to shell-model calculations using the standard USDA and USDB interactions as well as ab-initio valence-space Hamiltonians calculated from the in-medium similarity renormalization group based on chiral two- and three-nucleon forces. Both methods reproduce the measured level spacings well, and this close agreement allows unidentified spins and parities to be consistently assigned.

Keywords

Cite

@article{arxiv.1501.01166,
  title  = {Nuclear structure studies of $^{24}$F},
  author = {L. Caceres and A. Lepailleur and O. Sorlin and M. Stanoiu and D. Sohler and Zs. Dombradi and S. K. Bogner and B. A. Brown and H. Hergert and J. D. Holt and A. Schwenk and F. Azaiez and B. Bastin and C. Borcea and R. Borcea and C. Bourgeois and Z. Elekes and Zs. Fülöp and S. Grévy and L. Gaudefroy and G. F. Grinyer and D. Guillemaud-Mueller and F. Ibrahim and A. Kerek and A. Krasznahorkay and M. Lewitowicz and S. M. Lukyanov and J. Mrazek and F. Negoita and F. De Oliveira and Yu. -E. Penionzhkevich and Zs. Podolyak and M. G. Porquet and F. Rotaru and P. Roussel-Chomaz and M. G. Saint-Laurent and H. Savajols and G. Sletten and J. C. Thomas and J. Timar and C. Timis and Zs. Vajta},
  journal= {arXiv preprint arXiv:1501.01166},
  year   = {2015}
}

Comments

5 figures, 2 tables

R2 v1 2026-06-22T07:52:20.665Z