The dominance of the configuration in the shell in Be from the breakup reaction on a proton target at intermediate energy
arXiv:1711.04926 · doi:10.1016/j.physletb.2017.09.068
Abstract
The momentum distribution of Be fragments produced by the breakup of Be interacting with a proton target at 700.5 MeV/ energy has been measured at GSI Darmstadt. To obtain the structure information on the anomaly of the neutron shell, the momentum distribution of Be fragments from the one-neutron knockout Be(p,pn) reaction, measured in inverse kinematics, has been analysed in the distorted wave impulse approximation (DWIA) based on a quasi-free scattering scenario. The DWIA analysis shows a surprisingly strong contribution of the neutron orbital in Be to the transverse momentum distribution of the Be fragments. The single-neutron spectroscopic factor deduced from the present knock-out data is 1.39(10), which is significantly larger than that deduced recently from data of Be breakup on a carbon target. This result provides a strong experimental evidence for the dominance of the neutron configuration in the ground state of Be.
Accepted for publication in Physics Letters B