arXiv · 2102.01988
Proton-neutron pairing correlations in the self-conjugate nucleus $^{42}$Sc
Abstract
Collinear laser spectroscopy of the $N=Z=21$ self-conjugate nucleus $^{42}$Sc 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 $^{42\mathrm{g},42\mathrm{m}}$Sc 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 $^{42-46}$Sc 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.
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Agota Koszorus, Liam Vormawah, Randolf Beerwerth, Mark Bissell, Paul Campbell, Bradley Cheal, Charlie Devlin, Tommi Eronen, Stephan Fritzsche, Sarina Geldhof, Hanne Heylen, Jason Holt, Ari Jokinen, Sam Kelly, Iain Moore, Takayuki Miyagi, Sami Rinta-Antila, Annika Voss, Calvin Wraith. 2021-02-03. Proton-neutron pairing correlations in the self-conjugate nucleus $^{42}$Sc. https://doi.org/10.1016/j.physletb.2021.136439
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