Nuclear charge radii are sensitive probes of different aspects of the nucleon-nucleon interaction and the bulk properties of nuclear matter, providing a stringent test and challenge for nuclear theory. Experimental evidence suggested a new magic neutron number at N = 32 (refs. (1-3)) in the calcium region, whereas 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 beta-decay detection, we were able to extend charge radii measurements of potassium isotopes beyond N = 32. Here we provide a charge radius measurement of K-52. It does not show a signature of magic behaviour at N = 32 in p...
Radii of nuclear charge distributions carry information about the strong and electromagnetic forces ...
Nuclear ground-state properties, such as spin, charge radius, and magnetic dipole and electric quadr...
Understanding the evolution of the nuclear charge radius is one of the long-standing challenges for ...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Nuclear charge radii are ...
International audienceThe charge radii of potassium isotopes up to $^{52}$K are measured, and show n...
A Publisher Correction to this article was published on 24 February 2021: https://www.nature.com/art...
We report on the measurement of optical isotope shifts for 38,39,42,44,46–51K relative to 47K from w...
Submitted version. See original publication (doi:10.1038/nphys3645) for final versionInternational a...
We report on the measurement of optical isotope shifts for $^{38,39,42,44,46\text{-}51}$K relative t...
Nuclear ground-state properties, such as spin, charge radius, and magnetic dipole and electric quadr...
Nuclear ground-state properties, such as spin, charge radius, and magnetic dipole and electric quadr...
Nuclear charge radii globally scale as A1/3, with A the atomic mass number, and isotopes with an odd...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Nuclear charge radii glob...
The mesoscopic nature of the atomic nucleus gives rise to a wide array of macroscopic and microscopi...
We report on the measurement of optical isotope shifts for 38, 39, 42, 44, 46–51 K relative to 47 K ...
Radii of nuclear charge distributions carry information about the strong and electromagnetic forces ...
Nuclear ground-state properties, such as spin, charge radius, and magnetic dipole and electric quadr...
Understanding the evolution of the nuclear charge radius is one of the long-standing challenges for ...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Nuclear charge radii are ...
International audienceThe charge radii of potassium isotopes up to $^{52}$K are measured, and show n...
A Publisher Correction to this article was published on 24 February 2021: https://www.nature.com/art...
We report on the measurement of optical isotope shifts for 38,39,42,44,46–51K relative to 47K from w...
Submitted version. See original publication (doi:10.1038/nphys3645) for final versionInternational a...
We report on the measurement of optical isotope shifts for $^{38,39,42,44,46\text{-}51}$K relative t...
Nuclear ground-state properties, such as spin, charge radius, and magnetic dipole and electric quadr...
Nuclear ground-state properties, such as spin, charge radius, and magnetic dipole and electric quadr...
Nuclear charge radii globally scale as A1/3, with A the atomic mass number, and isotopes with an odd...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Nuclear charge radii glob...
The mesoscopic nature of the atomic nucleus gives rise to a wide array of macroscopic and microscopi...
We report on the measurement of optical isotope shifts for 38, 39, 42, 44, 46–51 K relative to 47 K ...
Radii of nuclear charge distributions carry information about the strong and electromagnetic forces ...
Nuclear ground-state properties, such as spin, charge radius, and magnetic dipole and electric quadr...
Understanding the evolution of the nuclear charge radius is one of the long-standing challenges for ...