Mass, spectroscopy and two-neutron decay of Be
arXiv:2401.16817
Abstract
The structure and decay of the most neutron-rich beryllium isotope, Be, has been investigated following proton knockout from a high-energy B beam. Two relatively narrow resonances were observed for the first time, with energies of and MeV above the two-neutron decay threshold and widths of and MeV respectively. These were assigned to be the ground () and first excited () state, with MeV. The mass excess of Be was thus deduced to be MeV, some MeV more bound than the only previous measurement. Both states were observed to decay by direct two-neutron emission. Calculations incorporating the evolution of the wavefunction during the decay as a genuine three-body process reproduced the principal characteristics of the neutron-neutron energy spectra for both levels, indicating that the ground state exhibits a strong spatially compact dineutron component, while the 2 level presents a far more diffuse neutron-neutron distribution.