Nuclear sizes and the isotope shift

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Abstract

Darwin-Foldy nuclear-size corrections in electronic atoms and nuclear radii are discussed from the nuclear-physics perspective. The interpretation of precise isotope-shift measurements is formalism dependent, and care must be exercised in interpreting these results and those obtained from relativistic electron scattering from nuclei. We strongly advocate that the entire nuclear-charge operator be used in calculating nuclear-size corrections in atoms rather than relegating portions of it to the nonradiative recoil corrections. A preliminary examination of the intrinsic deuteron radius obtained from isotope-shift measurements suggests the presence of small meson-exchange currents (exotic binding contributions of relativistic order) in the nuclear charge operator, which contribute approximately [Formula Presented]%. © 1997 The American Physical Society.

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Friar, J. L., Martorell, J., & Sprung, D. W. L. (1997). Nuclear sizes and the isotope shift. Physical Review A - Atomic, Molecular, and Optical Physics, 56(6), 4579–4586. https://doi.org/10.1103/PhysRevA.56.4579

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