Shell-structure of one-particle resonances in deformed potentials
arXiv:1605.05033 · doi:10.1103/PhysRevC.93.054328
Abstract
Shell structure of low-lying neutron resonant levels in axially-symmetric quadrupole-deformed potentials is discussed, which seems analogous to that of weakly-bound neutrons. As numerical examples, nuclei slightly outside the neutron-drip-line, Mg and C, are studied. For the lowest resonance I obtain = = 5/2 for Mg which is likely to be prolately deformed, while = = 1/2 may be assigned to the nucleus C which may be oblately deformed. Consequently, C will not be observed as a recognizable resonant state, in agreement with the experimental information.
16 pages and 3 figures
References in corpus (5)
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- Neutron shell structure and deformation in neutron-drip-line nuclei
- Search for C and constraints on C
- Oblate deformation of light neutron-rich even-even nuclei
- Interplay between one-particle and collective degrees of freedom in nuclei