Spectroscopic factor calculations in the \textit{ab initio} no-core shell model
arXiv:2411.04719 · doi:10.1103/PhysRevC.110.054301
Abstract
The convergence properties of spectroscopic factors in the \textit{ab initio} no-core shell model are hereby investigated. For this, we consider nuclear energies and spectroscopic factors in and 7 isotopes, using the chiral forces NNLO and NLO. While low-lying spectrum energy demonstrates remarkable convergence with the increase of model space within the no-core shell model, the spectroscopic factor exhibits no definitive convergence trend and seems independent of the employed nuclear interaction. The use of spectroscopic factors issued from the no-core shell model to calculate cross-sections of knockout reaction might then be questionable. The results are compared with that of the standard shell model and \textit{ab initio} Monte Carlo calculations.
9 pages, 7 figures