A combined ab initio and experimental analysis of nuclear form factors reduces uncertainties in superallowed beta-decay rates, enabling a more precise first-row CKM unitarity test.
Ohayon, Critical evaluation of reference charge radii and applications in mirror nuclei, Atom
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Muonic-atom x-ray measurements determine the charge radii of 35Cl and 37Cl as 3.3333(23) fm and 3.3444(23) fm respectively, with the isotope difference 25 times more precise than before.
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Taming nuclear size and shape effects in superallowed beta-decay
A combined ab initio and experimental analysis of nuclear form factors reduces uncertainties in superallowed beta-decay rates, enabling a more precise first-row CKM unitarity test.
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Charge radii of Cl isotopes from x-ray spectroscopy of muonic atoms
Muonic-atom x-ray measurements determine the charge radii of 35Cl and 37Cl as 3.3333(23) fm and 3.3444(23) fm respectively, with the isotope difference 25 times more precise than before.