A description of odd mass Xe and Te isotopes in the Interacting Boson-Fermion Model
arXiv:1304.4364 · doi:10.1016/j.nuclphysa.2014.04.009
Abstract
Recent interest in spectroscopic factors for single-neutron transfer in low-spin states of the even-odd Xenon Xe and even-odd Tellurium, Te isotopes stimulated us to study these isotopes within the frame work of the Interacting Boson-Fermion Model. The fermion that is coupled to the system of bosons is taken to be in the positive parity , , , and in the negative single-particle orbits, the complete 50-82 major shell. The calculated energies of low-spin energy levels of the odd isotopes are found to agree well with the experimental data. Also B(E2), B(M1) values and spectroscopic factors for single-neutron transfer are calculated and compared with experimental data.
Submitted to Nuclear Physics A
Cited by in corpus (6)
- Shape-phase transitions in odd-mass -soft nuclei with mass
- Shape transitions in odd-mass -soft nuclei within the interacting boson-fermion model based on the Gogny energy density functional
- Investigation of shape coexistence in 118-128Te isotopes
- Algebraic Solutions for Quantum Phase Transition in Odd Mass Number Nuclei
- Structure of Xe through multi-reference energy density functional calculations
- Study of shape coexistence in the 180-190Hg isotopes by SO(6) representation of eigenstates