PaperPanorama

arXiv:2607.16174·v1·Nuclear Experiment

Rapid structural evolution of neutron-rich silicon isotopes toward N = 28

G. L. Zimba · H. Iwasaki · B. A. Brown · Y. Utsuno · N. Shimizu · N. Aoi · M. Basson · T. Beck · J. Chen · J. Chung-Jung · A. Douglas · A. Ertoprak

Abstract

Neutron-rich Si isotopes represent a unique case of shell evolution, exhibiting a robust shell closure at and pronounced quadrupole collectivity at . We report lifetime measurements of excited states in Si and the first simultaneous lifetime and heavy-ion inelastic-scattering measurements in Si. In Si, the extracted lifetimes for the and states indicate moderate quadrupole collectivity at , together with signatures of triaxiality. In Si, two near-degenerate states at 570 and 658~keV exhibit comparable strengths as extracted from inelastic scattering, while the measured lifetimes indicate dominant decays. The combined lifetime and inelastic-scattering results suggest an evolution toward oblate shape, consistent with large-scale shell-model predictions.