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Octupole deformation in the nuclear chart based on the 3D Skyrme Hartree-Fock plus BCS model

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arxiv 1707.07416 v1 pith:5OKAVQVG submitted 2017-07-24 nucl-th

classification nucl-th
keywords betanucleioctupolemodelnuclearappeardeformationdeformed
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abstract

We have performed a systematic study of the ground state for even-even 1,002 nuclei in which 28 octupole-deformed nuclei are found. The interplay between the spatial deformation and the pairing correlation, plays important roles in nuclear structure. Our model is based on the Skyrme Hartree-Fock plus BCS model represented in the three-dimensional Cartesian coordinate space which can describe any kind of nuclear shape. The quadrupole and octupole deformed nuclei appear in the mass region with characteristic neutron and proton numbers which are consistent with previous studies. In our results, there appear only pear shape ($\beta_{30}$) in the octupole deformed nuclei. We investigate the potential energy surfaces as functions of the octupole deformations ($\beta_{3m}, m = 0, 1, 2, 3$), which tells us that. $^{220}$Rn has also local minima in the $\beta_{31}$ and $\beta_{32}$ potential energy surfaces.

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Cited by 1 Pith paper

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

  1. Nuclear Physics Confronts Relativistic Collisions Of Isobars

    nucl-ex 2025-07 conditional novelty 5.0 of 10

    RHIC isobar data are explained by different shapes of 96Ru and 96Zr, with 96Zr showing a large octupole deformation, so nuclear structure uncertainty, not the magnetic field, dominates the observed ratios.

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