Precision mass measurements of neutron-rich scandium isotopes refine the evolution of and shell closures
arXiv:2006.01302 · doi:10.1103/PhysRevLett.126.042501
Abstract
We report high-precision mass measurements of Sc isotopes performed at the LEBIT facility at NSCL and at the TITAN facility at TRIUMF. Our results provide a substantial reduction of their uncertainties and indicate significant deviations, up to 0.7 MeV, from the previously recommended mass values for Sc. The results of this work provide an important update to the description of emerging closed-shell phenomena at neutron numbers and above proton-magic . In particular, they finally enable a complete and precise characterization of the trends in ground state binding energies along the isotone, confirming that the empirical neutron shell gap energies peak at the doubly-magic Ca. Moreover, our data, combined with other recent measurements, does not support the existence of closed neutron shell in Sc at . The results were compared to predictions from both \emph{ab initio} and phenomenological nuclear theories, which all had success describing neutron shell gap energies but were highly disparate in the description of the isotone.
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