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Tensor part of the Skyrme energy density functional. II: Deformation properties of magic and semi-magic nuclei

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arxiv 0909.3782 v1 pith:RPKFS5HU submitted 2009-09-21 nucl-th

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keywords tensortermspropertiesskyrmedeformationdensityenergyfunctional
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We study systematically the impact of the time-even tensor terms of the Skyrme energy density functional, i.e. terms bilinear in the spin-current tensor density, on deformation properties of closed shell nuclei corresponding to 20, 28, 40, 50, 82, and 126 neutron or proton shell closures. We compare results obtained with three different families of Skyrme parameterizations whose tensor terms have been adjusted on properties of spherical nuclei: (i) TIJ interactions proposed in the first paper of this series [T. Lesinski et al., Phys. Rev. C 76, 014312 (2007)] which were constructed through a complete readjustment of the rest of the functional (ii) parameterizations whose tensor terms have been added perturbatively to existing Skyrme interactions, with or without readjusting the spin-orbit coupling constant. We analyse in detail the mechanisms at play behind the impact of tensor terms on deformation properties and how studying the latter can help screen out unrealistic parameterizations. It is expected that findings of the present paper are to a large extent independent of remaining deficiencies of the central and spin-orbit interactions, and will be of great value for the construction of future, improved energy functionals.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Is nucleon spin thermalized in intermediate-energy heavy-ion collisions?

    nucl-th 2026-02 conditional novelty 6.0 of 10

    In Au+Au collisions at 50-150 AMeV, spin-thermalized formulas predict about twice the nucleon spin polarization that a spin-orbit transport model produces, indicating spin is not fully thermalized.

  2. Probing properties of nuclear spin-orbit interaction with nucleon spin polarization in intermediate-energy heavy-ion collisions

    nucl-th 2025-02 conditional novelty 5.0 of 10

    Simulations predict that the spin polarization of free nucleons in 100A MeV Au+Au collisions probes the strength, density dependence, and isospin dependence of the nuclear spin-orbit interaction.

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