Abstract
Abstract
We propose a simple and versatile model for Λ hypernuclei in medium- and heavy-mass regions to obtain their low-lying energy levels and electromagnetic transitions. In this model, we treat the core nucleus as a simple indivisible union of nucleons, and its properties are considered based on the experimental data. The interaction between nucleons in the core and a Λ particle is assumed to be weak and is treated perturbatively. We study medium- and heavy-Λ hypernuclei, i.e.,
Λ
51
V,
Λ
52
V,
Λ
89
Y,
Λ
139
La, and
Λ
208
Pb. To check the applicability of the model to a lighter hypernucleus, we apply it to
Λ
19
F, where γ-ray transitions have been experimentally observed. The present study demonstrates that the low-lying excited states of the core nucleus below 2 MeV, in addition to the ground state of the core nucleus have to be considered in the calculation of spectra and electromagnetic transitions in the low-lying states of Λ hypernuclei. The proposed model helps us theoretically study specific medium- and heavy-hypernuclei where large-scale shell-model studies are intractable to carry out.
Funder
Leading Initiative for Excellent Young Researchers, MEXT
Japan Society for the Promotion of Science
Subject
Condensed Matter Physics,Mathematical Physics,Atomic and Molecular Physics, and Optics
Cited by
1 articles.
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