Properties of exotic nuclei and their linkage to the nucleonic interaction
arXiv:1912.05756 · doi:10.1142/S021830131930008X
Abstract
The structure of exotic nuclei sheds new light on the linkage of the nuclear structure to the nucleonic interaction. The self-consistent mean-field (SCMF) theories are useful to investigate this linkage, which are applicable to many nuclei covering almost the whole range of the nuclear chart without artificial truncation of model space. For this purpose, it is desired to develop effective interaction for the SCMF calculations well connected to the bare nucleonic interaction. Focusing on ground-state properties, I show results of the SCMF calculations primarily with the M3Y-type semi-realistic interaction, M3Y-P6 and M3Y-P6a to be precise, and discuss in detail how the nucleonic interaction affects structure of nuclei including those far off the -stability.
To be published in IJMPE (as a review article)
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- Toward ab initio charge symmetry breaking in nuclear energy density functionals
- Linear Response Theory with finite-range interactions
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- Exploring effects of tensor force and its strength via neutron drops
- Significance of tensor force in pseudo-spin symmetry
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- : A possible heaviest doubly magic nucleus
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- Pairing effects on pure rotational energy of nuclei
- Assessment of effect of local approximation on single folding potential at low and intermediate incident energies