5 papers · 1 filter
Unveiling potential neutron halos in intermediate-mass nuclei: an \textit{ab initio} study
H. H. Li, J. G. Li, M. R. Xie +1
Halos epitomize the fascinating interplay between weak binding, shell evolution, and deformation effects, especially in nuclei near the drip line. In this Letter, we apply the stat…
Ab initio valence-space in-medium similarity renormalization group calculations for neutron-rich P, Cl, and K isotopes
M. R. Xie, L. Y. Shen, J. G. Li +3
Neutron-rich P, Cl, and K isotopes, particularly those with neutron numbers around , have attracted extensive experimental and theoretical interest. We utilize the \textit{ab…
Investigation of unbound hydrogen isotopes with the Gamow shell model
H. H. Li, J. G. Li, N. Michel +1
Although they are part of the lightest nuclei, the hydrogen isotopes are not well understood both experimentally and theoretically. Indeed, besides deuteron and triton, all known h…
Investigation of spectroscopic factors of deeply-bound nucleons in drip-line nuclei with the Gamow shell model
M. R. Xie, J. G. Li, N. Michel +4
Spectroscopic factors involving well bound nucleons in light nuclei are calculated with standard shell model, no-core shell model and Gamow shell model. Continuum coupling is inclu…
Investigation of isospin-symmetry-breaking in mirror energy difference and nuclear mass with ab initio calculations
H. H. Li, Q. Yuan, J. G. Li +7
Isospin-symmetry breaking is responsible for the energy difference of excited states in mirror nuclei. It also influences the coefficient of the isobaric multiplet mass equation. I…