Low-spin particle/hole-core excitations in $^{41,47,49}$Ca isotopes studied by cold-neutron capture reactions
Abstract
We present recent results on the structure of the one-valence-particle Ca and Ca, and one-valence-hole Ca, nuclei. The isotopes of interest were populated via the cold-neutron capture reactions Ca(n,), Ca(n,) and Ca(n,), respectively. The experiments were performed at the Institut Laue-Langevin, within the EXILL campaign, which employed a large array of HPGe detectors. The decay and level schemes of these nuclei were investigated by -ray coincidence relationships, leading to the identification of 41, 10, and 6 new transitions in Ca, Ca, and Ca, respectively. Branching ratios and intensities were extracted for the decay from each state, and -ray angular correlations were performed to establish a number of transition multipolarities and mixing ratios, thus helping in the spin assignment of the states. The experimental findings are discussed along with microscopic, self-consistent beyond-mean-field calculations performed with the Hybrid Configuration Mixing model, based on a Skyrme SkX Hamiltonian. The latter suggests that a fraction of the low-spin states of the Ca, Ca, and Ca nuclei is characterized by the coexistence of either 2p-1h and 1p-2h excitations, or couplings between single-particle/hole degrees of freedom and collective vibrations (phonons) of the doubly-magic "core".
Keywords
Cite
@article{arxiv.2012.05162,
title = {Low-spin particle/hole-core excitations in $^{41,47,49}$Ca isotopes studied by cold-neutron capture reactions},
author = {S. Bottoni and N. Cieplicka-Oryńczak and S. Leoni and B. Fornal and G. Colò and P. F. Bortignon and G. Bocchi and D. Bazzacco and G. Benzoni and A. Blanc and A. Bracco and S. Ceruti and F. C. L. Crespi and G. de France and E. R. Gamba and Ł. W. Iskra and M. Jentschel and U. Köster and C. Michelagnoli and B. Million and D. Mengoni and P. Mutti and Y. Niu and C. Porzio and G. Simpson and T. Soldner and B. Szpak and A. Türler and C. A. Ur and W. Urban},
journal= {arXiv preprint arXiv:2012.05162},
year = {2021}
}