PaperPanorama

Nuclear Theory·nucl-th

Friday·December 16, 2022

9 papers2 primary·7 cross-listed

  1. 01

    Beyond-Mean-Field with an Effective Hamiltonian Mapped from an Energy Density Functional

    J. Ljungberg · J. Boström · B. G. Carlsson · A. Idini · J. Rotureau

    A method for beyond-mean-field calculations based on an energy density functional is described. The main idea is to map the energy surface for the nuclear quadrupole deformation, obtained from an energy density functional at the mean-field level, into an effective Hamiltonian expressed as a many-body operator. The advantage of this procedure is that one avoids the problems with density dependence which can arise in beyond-mean-field methods. The effective Hamiltonian is then used in a straightforward way in the generator-coordinate-method with the inclusion of projections onto good particle numbers and angular momentum. In the end, both spectra and wave functions are obtained. As an example of the method, calculations for the nucleus Zn is performed with three different parametrizations of the Skyrme functional. The results are compared with experiment.

    nucl-thJ.Phys.Conf.Ser.(2023)·4 citations
  2. 02

    Coexistence of quartets and pairs in even-even nuclei

    M. Sambataro · N. Sandulescu · D. Gambacurta

    We analyse the structure of the ground states of even-even nuclei with nucleons moving in the same major shell and interacting via realistic two-body forces of shell-model type. We express the ground states of these nuclei as a product of a quartet term, which represents the subsystem, and a pair condensate built with the excess neutrons. The accuracy of this approximation is discussed for nuclei with valence nucleons in the and major shells.

    nucl-thNPA(2023)·2 citations

Affiliations

first authorsco-authorsvia INSPIRE