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Symmetry restoration methods
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Symmetry techniques based on group theory play a prominent role in the analysis of nuclear phenomena, and in particular in the understanding of observed regular patterns in nuclear spectra and selection rules for electromagnetic transitions. A variety of symmetry-based nuclear models have been developed in nuclear physics, providing efficient tools of choice to interpret nuclear spectroscopic data. This chapter provides a pedagogical introduction to the basic idea of symmetry-breaking mechanism and symmetry-restoration methods in modeling atomic nuclei.
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Cited by 2 Pith papers
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Multiple shape coexistence near Sn118: First 03+ lifetime measurement
First lifetime measurement of the 0_3+ state in 118Sn yields an enhanced E0 transition of 150(30) milliunits, indicating multiple shape coexistence, with supporting calculations showing three shapes in 116-120Sn.
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Statistical uncertainty quantification for multireference covariant density functional theory
Bayesian sampling of ~1M EDF parameter sets combined with subspace-projected CDFT shows that statistical uncertainties bring deformed nuclei 150Nd and 150Sm into agreement with data while near-spherical 136Xe and 136B...
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