PAPER / ARXIV:2609.07799
E. A. M. Jensen , J. M. Eder , P. H. Pedersen , A. Adams , M. J. G. Borge , B. A. Brown , J. Dopfer , H. O. U. Fynbo , B. S. O. Johansson , B. Jonson , M. Madurga , J. S. Nielsen , K. Riisager , C. S. Sumithrarachchi , L. J. Sun , O. Tengblad , L. E. Weghorn , T. Wheeler , C. Wrede
RESUMO
We report on the $\beta$-delayed proton and $\gamma$-ray emission from $^{25}\mathrm{Si}$, measured at the Facility for Rare Isotope Beams (FRIB). Low-energy $^{25}\mathrm{Si}$ ions extracted from the Advanced Cryogenic Gas Stopper were implanted into a thin carbon foil surrounded by a compact, highly segmented array of silicon detector telescopes and two high-purity germanium detectors. This setup provides high-resolution charged-particle spectroscopy, establishing a proof of principle for precision stopped-beam decay studies at FRIB. We reconstruct the $^{25}\mathrm{Si}$ decay scheme, resolving new high-energy proton transitions and determining the feeding to excited states in $^{24}\mathrm{Mg}$. The observation of spectral interference patterns enables firm spin and parity assignments for highly excited states in $^{25}\mathrm{Al}$. The $^{25}\mathrm{Si}$ $\beta$-strength distribution is extracted and compared with large-scale shell-model calculations.
NO MESMO MAPA