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Laser Spectroscopy of Neutron-Rich ^{207,208}Hg Isotopes: Illuminating the Kink and Odd-Even Staggering in Charge Radii across the N=126 Shell Closure. | LitMetric

AI Article Synopsis

  • The mean-square charge radii of mercury isotopes ^{207,208}Hg were studied for the first time, with ^{202,203,206}Hg being remeasured using laser spectroscopy at CERN.
  • The research revealed a significant kink in the charge radii at the N=126 neutron shell closure, which offers new insights into nuclear behavior below the Z=82 proton shell closure.
  • A theoretical analysis showed that this kink and the odd-even staggering in the nearby isotopes can be largely explained without relying heavily on pairing effects, proposing a new mechanism related to neutron orbital occupation differences in odd- and even-A nuclei.

Article Abstract

The mean-square charge radii of ^{207,208}Hg (Z=80, N=127, 128) have been studied for the first time and those of ^{202,203,206}Hg (N=122, 123, 126) remeasured by the application of in-source resonance-ionization laser spectroscopy at ISOLDE (CERN). The characteristic kink in the charge radii at the N=126 neutron shell closure has been revealed, providing the first information on its behavior below the Z=82 proton shell closure. A theoretical analysis has been performed within relativistic Hartree-Bogoliubov and nonrelativistic Hartree-Fock-Bogoliubov approaches, considering both the new mercury results and existing lead data. Contrary to previous interpretations, it is demonstrated that both the kink at N=126 and the odd-even staggering (OES) in its vicinity can be described predominately at the mean-field level and that pairing does not need to play a crucial role in their origin. A new OES mechanism is suggested, related to the staggering in the occupation of the different neutron orbitals in odd- and even-A nuclei, facilitated by particle-vibration coupling for odd-A nuclei.

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Source
http://dx.doi.org/10.1103/PhysRevLett.126.032502DOI Listing

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