PaperPanorama

Nuclear Theory·nucl-th

Monday·February 19, 2018

6 papers2 primary·4 cross-listed

  1. 01

    Nuclear Structure of Two-Proton Halo-Nucleus 17Ne

    F. H. M. Salih · Y. M. I. Perama · S. Radiman · K.K. Siong

    Theoretical investigation of two-proton halo-nucleus 17Ne has revealed that the valence protons are more likely to be positioned in the d-state than the s-state. In this study, this finding is clarified by calculation of the binding energy, it is found that the theoretical values for the d-state are closer to the experimental values, in contrast with those obtained for the s-state. The three-body model and MATLAB software are utilised to obtain theoretical values for the three-body-model 17Ne binding energy and matter radius. 17Ne has halo properties of a weakly bound valence proton, a binding energy of less than 1 MeV, and a large matter radius. The core deformation parameter has zero and negative values; thus, the 17Ne core exhibits both spherical and oblate shapes depending on the binding energy of the three-body system. This suggests 17Ne has two-proton halo.

    nucl-th0 citations
  2. 02

    g-factor calculations from the generalized seniority approach

    Bhoomika Maheshwari · Ashok Kumar Jain

    The generalized seniority approach proposed by us to understand the B(E1)/B(E2)/B(E3) properties of semi-magic nuclei has been widely successful in the explanation of the same and has led to an expansion in the scope of seniority isomers. In the present paper, we apply the generalized seniority scheme to understand the behavior of g-factors in semi-magic nuclei. We find that the magnetic moment and the gfactors do show a particle number independent behavior as expected and the understanding is consistent with the explanation of transition probabilities.

    nucl-thEPJ Web Conf.(2018)·0 citations

Affiliations

first authorsco-authorsvia INSPIRE