-decay rates of Rh into Pd isotopes in the microscopic IBFM-2
arXiv:2010.13487 · doi:10.1103/PhysRevC.102.054329
Abstract
The structure of odd- Rh and Pd isotopes is studied by means of the neutron-proton Interacting Boson-Fermion Model (IBFM-2). quantum number assignment for the Pd ground-states is critically discussed and the predicted energy levels are compared to the existing experimental data. The resulting nuclear wave functions are used to compute the -decay values of the transitions from Rh to Pd in the microscopic IBFM-2 and the results compared with the data.
References in corpus (4)
- Nuclear matrix elements for double-β decay
- and nuclear matrix elements, QRPA, and isospin symmetry restoration
- Beta decay of 71,73Co; probing single particle states approaching doubly magic 78Ni
- decay of odd-A nuclei with the interacting boson-fermion model based on the Gogny energy density functional
Cited by in corpus (7)
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- Simultaneous description of decay and low-lying structure of neutron-rich even- and odd-mass Rh and Pd nuclei
- Parameter dependence of the -decay properties of neutron-rich Zr isotopes within the interacting boson model
- Sensitivity analysis of -decay half-life predictions for Ge, As, Zr and Mo nuclei within the mapped interacting boson model
- Microscopic formulation of the interacting boson-fermion model using the nuclear energy density functional