Artykuł w czasopiśmie
Brak miniatury
Licencja

CC-BYCC-BY - Uznanie autorstwa

Testing ab initio nuclear structure in neutron-rich nuclei: Lifetime measurements of second 2<sup>+</sup> state in <sup>16</sup>C and <sup>20</sup>O

Autor
Kicińska-Habior, Marta
Napiorkowski, Paweł
Maj, A.
Leoni, S.
Crespi, F. C. L.
Ziliani, S.
Ciemała, M.
Million, B.
Matejska-Minda, M.
Bracco, A.
Data publikacji
2020
Abstrakt (EN)

To test the predictive power of ab initio nuclear structure theory, the lifetime of the second 2<sup>+</sup> state in neutron-rich <sup>20</sup>O, τ(2<sub>2</sub><sup>+</sup>)=150<sup>+80</sup><sub>-30</sub>fs, and an estimate for the lifetime of the second 2<sup>+</sup> state in <sup>16</sup>C have been obtained for the first time. The results were achieved via a novel Monte Carlo technique that allowed us to measure nuclear state lifetimes in the tens-to-hundreds of femtoseconds range by analyzing the Doppler-shifted γ-transition line shapes of products of low-energy transfer and deep-inelastic processes in the reaction <sup>18</sup>O(7.0MeV/u)+ <sup>181</sup>Ta. The requested sensitivity could only be reached owing to the excellent performances of the Advanced γ-Tracking Array AGATA, coupled to the PARIS scintillator array and to the VAMOS++ magnetic spectrometer. The experimental lifetimes agree with predictions of ab initio calculations using two- and three-nucleon interactions, obtained with the valence-space in-medium similarity renormalization group for <sup>20</sup>O and with the no-core shell model for <sup>16</sup>C. The present measurement shows the power of electromagnetic observables, determined with high-precision γ spectroscopy, to assess the quality of first-principles nuclear structure calculations, complementing common benchmarks based on nuclear energies. The proposed experimental approach will be essential for short lifetime measurements in unexplored regions of the nuclear chart, including r-process nuclei, when intense beams, produced by Isotope Separation On-Line (ISOL) techniques, become available.

Słowa kluczowe EN
SHELL-MODEL
COLLECTIVITY
PERFORMANCE
FORCES
Dyscyplina PBN
nauki fizyczne
Czasopismo
Physical Review C
Tom
101
Zeszyt
2
Strony od-do
021303
ISSN
2469-9985
Data udostępnienia w otwartym dostępie
2020-02-27
Licencja otwartego dostępu
Uznanie autorstwa