Few-body structures in the mirror nuclei, O and Li
arXiv:2003.04586 · doi:10.1103/PhysRevC.101.034003
Abstract
We investigate the dripline mirror nuclei, Li and O, located on the neutron and proton dripline, respectively. We calculate the lowest four states, , , and , built on double occupancy in the nuclear and valence single-particle states. We use the hyperspherical adiabatic expansion method to solve the three-body problem for a frozen nuclear core surrounded by two identical nucleons. The four analogue states in O are obtained with precisely the same interactions as used for the four states in Li, except for addition of the Coulomb interaction from the charge of the substituted valence protons. Surprisingly the four energies deviate from each other only by less than a few hundred keV. Any of them could then turn out to be the ground state, due to the uncertainty related to the angular momentum and parity dependence of the three-body potential. Still, our calculations marginally favor the state. The structures of these four states in O deviate substantially from the analogue states in the mirror, Li.
To be published in Physical Review C
References in corpus (5)
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- Precision Measurement of 11Li moments: Influence of Halo Neutrons on the 9Li Core
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