On the Dominance of Deformation in Nuclear Physics, its Link to Symplectic Symmetry, and its Roots in an Effective Field Theory

J. Draayer, D. Kekejian, G. Sargsyan, T. Dydtrych, R. Baker, K. Launey
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Abstract

A brief historical review of the important role symmetries have played in our gaining a deeper understanding nuclear structure is presented.We then focus our attention on the special role that symplectic symmetry plays in exposing a “Dominance of Deformation” that is found through enhanced B(E2) rates across the Chart of the Nuclides, and in addition, we will show how the No-Core Symplectic Shell Model (NC-SpSM) seems to emerge from a Symplectic Effective Field Theory(Sp-EFT), where the latter prepares away forward for gaining a truly ab initio understanding of the structure of atomic nuclei. As space permits, various spectra, B(E2) transition rates, and nuclear radii of selected light to medium-mass nuclei are shown.
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论形变在核物理中的主导地位及其与辛对称的联系及其在有效场论中的根源
简要回顾了对称性在我们加深对核结构的认识中所起的重要作用。然后,我们将注意力集中在辛对称在揭示“变形优势”方面所起的特殊作用上,这种优势是通过核素图中增强的B(E2)速率发现的,此外,我们将展示无核辛壳模型(NC-SpSM)似乎是从辛有效场论(Sp-EFT)中产生的,后者为获得对原子核结构的真正从头开始理解做好了准备。在篇幅允许的情况下,给出了选定的轻质量到中等质量原子核的各种光谱、B(E2)跃迁速率和核半径。
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