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Understanding the Effect of Chiral NN Parametrization on Nuclear Shapes From an Ab Initio Perspective

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arxiv 2311.13020 v1 pith:ZTOI2MD3 submitted 2023-11-21 nucl-th

classification nucl-th
keywords interactionshapescoexistencecollectiveeffectinitionuclearparametrization
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The ab initio symmetry-adapted no-core shell model naturally describes nuclear deformation and collectivity, and is therefore well-suited to studying the dynamics and coexistence of shapes in atomic nuclei. For the first time, we analyze how these features in low-lying states of 6Li and 12C are impacted by the underlying realistic nucleon-nucleon interaction. We find that the interaction parametrization has a notable but limited effect on collective shapes in the lowest 6Li and 12C states, while collective structures in the excited 2+ state of 12C are significantly more sensitive to the interaction parameters and exhibits emergent shape coexistence.

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Cited by 1 Pith paper

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  1. Unexpected Rise in Nuclear Collectivity from Short-Range Physics

    nucl-th 2024-12 conditional novelty 6.0 of 10

    Short-range S-wave contact terms in the chiral nucleon-nucleon force substantially change computed quadrupole collectivity in 6Li and 12C by shifting surface oscillations within one dominant nuclear shape.

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