The structure of Ca under the Coulomb magnifying glass
arXiv:2201.01513 · doi:10.1103/PhysRevLett.129.122501
Abstract
Detailed spectroscopy of the neutron-deficient nucleus Ca was obtained up to 9 MeV using the Ca(,)Ca and the Ca(,)Ca transfer reactions. The radioactive nuclei, produced by the LISE spectrometer at GANIL, interacted with the protons of the liquid Hydrogen target CRYPTA, to produce light ejectiles (the deuteron or triton ) that were detected in the MUST2 detector array, in coincidence with the heavy residues %identified by a zero degree detection system. %States have been measured up to 9 MeV. Our main findings are: i) a similar shift in energy for the 1 and 2 states by about -250 keV, as compared to the mirror nucleus S, ii) the discovery of an intruder 0 state at 2.83(13) MeV, which appears below the first 2 state, in contradiction with the situation in S, and iii) a tentative 0 state at 4.83(17) MeV, proposed to exhibit a bubble structure with two neutron vacancies in the 2s orbit. The inversion between the 0 and 2 states is due to the large mirror energy difference (MED) of -516(130) keV for the former. This feature is reproduced by Shell Model (SM) calculations, using the - valence space, predicting an almost pure intruder nature for the 0 state, with two protons (neutrons) being excited across the =20 magic closure in Ca (S). This mirror system has the largest MEDs ever observed, if one excludes the few cases induced by the effect of the continuum.
Paper of 5 pages, 3 figures. Contains also a supplementary material of 3 pages and 4 figures
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