Dominant shapes naturally emerge in atomic nuclei from first principles, thereby establishing the shape-preserving symplectic Sp(3,
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Emergent symmetries in atomic nuclei: Probing nuclear dynamics and physics beyond the standard model
) symmetry as remarkably ubiquitous and almost perfect symmetry in nuclei. We discuss the critical role of this emergent symmetry in enabling machine-learning descriptions of heavy nuclei, ab initio modeling of\mathbb{R} clustering and collectivity, as well as tests of beyond-the-standard-model physics. In addition, the Sp(3,\alpha ) and SU(3) symmetries provide relevant degrees of freedom that underpin the ab initio symmetry-adapted no-core shell model with the remarkable capability of reaching nuclei and reaction fragments beyond the lightest and close-to-spherical species.\mathbb{R} Free, publicly-accessible full text available November 23, 2024 -
Free, publicly-accessible full text available November 1, 2024