Charge radii of exotic potassium isotopes challenge nuclear theory and the magic character of
arXiv:2012.01864 · doi:10.1038/s41567-020-01136-5
Abstract
Nuclear charge radii are sensitive probes of different aspects of the nucleon-nucleon interaction and the bulk properties of nuclear matter; thus, they provide a stringent test and challenge for nuclear theory. The calcium region has been of particular interest, as experimental evidence has suggested a new magic number at [1-3], while the unexpectedly large increases in the charge radii [4,5] open new questions about the evolution of nuclear size in neutron-rich systems. By combining the collinear resonance ionization spectroscopy method with -decay detection, we were able to extend the charge radii measurement of potassium () isotopes up to the exotic K ( = 110 ms), produced in minute quantities. Our work provides the first charge radii measurement beyond in the region, revealing no signature of the magic character at this neutron number. The results are interpreted with two state-of-the-art nuclear theories. For the first time, a long sequence of isotopes could be calculated with coupled-cluster calculations based on newly developed nuclear interactions. The strong increase in the charge radii beyond is not well captured by these calculations, but is well reproduced by Fayans nuclear density functional theory, which, however, overestimates the odd-even staggering effect. These findings highlight our limited understanding on the nuclear size of neutron-rich systems, and expose pressing problems that are present in some of the best current models of nuclear theory.
submitted version; revision accepted in Nature Physics
References in corpus (8)
- Improved nuclear matter calculations from chiral low-momentum interactions
- Accurate nuclear radii and binding energies from a chiral interaction
- Nuclear Charge Radii of Be-7,9,10 and the one-neutron halo nucleus Be-11
- Axially deformed solution of the Skyrme-Hartree-Fock-Bogolyubov equations using the transformed harmonic oscillator basis (II) HFBTHO v2.00d: a new version of the program
- Probing the N = 32 shell closure below the magic proton number Z = 20: Mass measurements of the exotic isotopes 52,53K
- Charge radii of exotic neon and magnesium isotopes
- Changes in nuclear structure along the Mn isotopic chain studied via charge radii
- Analytic Response Relativistic Coupled-Cluster Theory: The first application to indium isotope shifts
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