A ground state Al halo is unlikely
arXiv:2601.03961 · doi:10.1103/3lpm-sy41
Abstract
We report the decisive resolution of the ground state spin and parity of the proton-dripline nucleus Al, a prime candidate for a proton halo. The resolution stems from the first -delayed charged particle emission experiment in the Gas Stopping Area at the Facility for Rare Isotope Beams (FRIB), leveraging high-intensity, low-energy beams extracted from the Advanced Cryogenic Gas Stopper (ACGS). The pristine beam quality from FRIB and the ACGS enabled a sensitive particle identification technique using thin silicon detectors, allowing for the suppression of the dominant proton background and the first observation of the weak -delayed transition from the Isobaric Analog State in Mg to the Ne ground state. This observation uniquely fixes the Al ground state as . The valence proton is confined by a dominant -wave centrifugal barrier which, combined with the Coulomb repulsion, hinders the tunneling required for halo formation despite the exceptionally low proton separation energy of Al.
5 pages, 2 figures