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arXiv:2504.17060·v2·Nuclear Experiment

Charge Radii Measurements of Exotic Tin Isotopes in the Proximity of and

F.P. Gustafsson🇧🇪 · L. V. Rodríguez🇩🇪 · R.F. Garcia Ruiz🇺🇸 · T. Miyagi🇯🇵 · S.W. Bai🇨🇳 · D.L. Balabanski🇷🇴 · C.L. Binnersley🇬🇧 · M.L. Bissell🇬🇧 · K. Blaum🇩🇪 · B. Cheal🇬🇧 · T.E. Cocolios🇧🇪 · G.J. Farooq-Smith🇧🇪

Abstract

We report nuclear charge radii for the isotopes Sn, measured using two different collinear laser spectroscopy techniques at ISOLDE-CERN. These measurements clarify the arch-like trend in charge radii along the isotopic chain and reveal an odd-even staggering that is more pronounced near the and shell closures. The observed local trends are well described by both nuclear density functional theory and valence space in-medium similarity renormalization group calculations. Both theories predict appreciable contributions from beyond-mean-field correlations to the charge radii of the neutron-deficient tin isotopes. The models, however, fall short of reproducing the magnitude of the known transition probabilities, highlighting the remaining challenges in achieving a unified description of both ground-state properties and collective phenomena.

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