Measurements of binding energies and electromagnetic moments of silver isotopes – A complementary benchmark of density functional theory

We report on a set of high-precision measurements of nuclear binding and excitation energies, as well as nuclear spins, magnetic dipole and electric quadrupole moments of neutron-rich silver isotopes, 113−123Ag. The measurements were performed using the JYFLTRAP mass spectrometer and the collinear l...

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Veröffentlicht in:Physics letters. B 2024-01, Vol.848, p.138352, Article 138352
Hauptverfasser: de Groote, R.P., Nesterenko, D.A., Kankainen, A., Bissell, M.L., Beliuskina, O., Bonnard, J., Campbell, P., Canete, L., Cheal, B., Delafosse, C., de Roubin, A., Devlin, C.S., Dobaczewski, J., Eronen, T., Garcia Ruiz, R.F., Geldhof, S., Gins, W., Hukkanen, M., Imgram, P., Mathieson, R., Koszorús, Á., Moore, I.D., Pohjalainen, I., Reponen, M., van den Borne, B., Vilén, M., Zadvornaya, S.
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Sprache:eng
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Zusammenfassung:We report on a set of high-precision measurements of nuclear binding and excitation energies, as well as nuclear spins, magnetic dipole and electric quadrupole moments of neutron-rich silver isotopes, 113−123Ag. The measurements were performed using the JYFLTRAP mass spectrometer and the collinear laser spectroscopy beamline at the Ion Guide Isotope Separator On-Line (IGISOL) facility. For the first time, we can firmly establish the ordering of the long-lived Iπ=1/2−,7/2+ states in these isotopes, and pin down the inversion of these two levels at either A=121(N=74) or A=123(N=76). We compare these findings to calculations performed with density functional theory (DFT), from which we establish the crucial role that the spin-orbit strength and time-odd mean fields play in the simultaneous description of electromagnetic moments and nuclear binding.
ISSN:0370-2693
DOI:10.1016/j.physletb.2023.138352