A. Koszorus,
L. J. Vormawah,
R. Beerwerth,
M. L. Bissell,
P. Campbell,
B. Cheal,
C. S. Devlin,
T. Eronen,
S. Fritzsche,
S. Geldhof,
H. Heylen,
J. D. Holt,
A. Jokinen,
S. Kelly,
I. D. Moore,
T. Miyagi,
S. Rinta-Antila,
A. Voss,
and C. Wraith
Proton-neutron pairing correlations in the self-conjugate nucleus Sc-42
Phys. Rev. B, 819 :136439 (August 2021)
Proton-neutron pairing correlations in the self-conjugate nucleus Sc-42
Phys. Rev. B, 819 :136439 (August 2021)
Abstract:
Collinear laser spectroscopy of the N = Z = 21 self-conjugate nucleus Sc-42 has been performed at the JYFL IGISOL IV facility in order to determine the change in nuclear mean-square charge radius between the I-pi = 0(+) ground state and the I-pi = 7(+) isomer via the measurement of the Sc-42g,Sc-42m isomer shift. New multi-configurational Dirac-Fock calculations for the atomic mass shift and field shift factors have enabled a recalibration of the charge radii of the Sc42-46 isotopes which were measured previously. While consistent with the treatment of proton-neutron, proton-proton and neutron-neutron pairing on an equal footing, the reduction in size for the isomer is observed to be of a significantly larger magnitude than that expected from both shell-model and ab-initio calculations. The measured nuclear magnetic dipole moment and electric quadruple moment, on the other hand, are in good agreement with simple empirical estimates and shell-model calculations.