High-precision -value measurement of the superallowed $β^+$ emitter Mg and an evaluation of the isobaric triplet
arXiv:1708.00536 · doi:10.1103/PhysRevC.96.052501
Abstract
A direct -value measurement of the superallowed $β^+$ emitter Mg was performed using TRIUMF's Ion Trap for Atomic and Nuclear science (TITAN). The direct ground-state to ground-state atomic mass difference between Mg and Na was determined to be ~keV, representing the most precise single measurement of this quantity to date. In a continued push towards calculating superallowed isospin-symmetry-breaking (ISB) corrections from first principles, ab-initio shell-model calculations of the IMME are also presented for the first time using the valence-space in-medium similarity renormalization group formalism. With particular starting two- and three-nucleon forces, this approach demonstrates a level of agreement with the experimental data that suggests reliable ab-initio calculations of superallowed ISB corrections are now possible.