Precision mass measurements in the zirconium region pin down the mass surface across the neutron midshell at
arXiv:2402.12107 · doi:10.1016/j.physletb.2024.138916
Abstract
Precision mass measurements of Y, Zr, Nb, and Mo have been performed with the JYFLTRAP double Penning trap mass spectrometer at the Ion Guide Isotope Separator On-Line facility. The order of the long-lived states in Nb was unambiguously established. The trend in two-neutron separation energies around the neutron midshell appeared to be steeper with respect to the Atomic Mass Evaluation 2020 extrapolations for the Y and Zr isotopic chains and less steep for the Nb chain, indicating a possible gap opening around . The experimental results were compared to the BSkG2 model calculations performed with and without vibrational and rotational corrections. All of them predict two low-lying minima for Zr. While the unaltered BSkG2 model fails to predict the trend in two-neutron separation energies, selecting the more deformed minima in calculations and removing the vibrational correction, the calculations are more in line with experimental data. The same is also true for the excitation energies and differences in charge radii in the Zr isotopes. The results stress the importance of improved treatment of collective corrections in large-scale models and further development of beyond-mean-field techniques.
10 pages, 4 figures
References in corpus (10)
- Configuration mixing of angular-momentum and particle-number projected triaxial HFB states using the Skyrme energy density functional
- A sextupole ion beam guide to improve the efficiency and beam quality at IGISOL
- Beyond Mean-Field Calculations for Odd-A Nuclei
- Symmetry conserving configuration mixing method with cranked states
- Shape staggering of mid-shell mercury isotopes from in-source laser spectroscopy compared with Density Functional Theory and Monte Carlo Shell Model calculations
- Skyrme-Hartree-Fock-Bogoliubov mass models on a 3D Mesh: Effect of triaxial shape
- Skyrme-Hartree-Fock-Bogoliubov mass models on a 3D mesh: II. Time-reversal symmetry breaking
- Odd-odd neutron-rich rhodium isotopes studied with the double Penning trap JYFLTRAP
- Skyrme-Hartree-Fock-Bogoliubov mass models on a 3D mesh. IIb. Fission properties of BSkG2
- Binding energies of ground and isomeric states in neutron-rich ruthenium isotopes: measurements at JYFLTRAP and comparison to theory
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