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May 27, 2026Symmetry0 citationsOpen Access

Quantum Choreography of the Nucleus: Rotations, Vibrations, and Emergent Structure

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AAAni AprahamianKLKevin LeeSLShelly Lesher

Key Points

  • The aim is to clarify the nature of the first excited Kπ =0+ band in nuclei through theoretical and experimental data.
  • Analyzed nuclear lifetimes and energy level evolutions for nuclei in the Z = 50–82 region.
  • Examined dynamic moments of inertia and intrinsic quadrupole moments from transition probabilities.
  • Reviewed compiled data from several decades of studies on low-lying nuclear structures.
  • For a subset of nuclei, the Kπ =0+ band aligns with the traditional β-vibration description.
  • Emergent shapes of nuclei were characterized at elevated excitation energies.
  • Conflicting interpretations of the first excited Kπ =0+ band as a ground state vibration were addressed.

Abstract

Nuclei are complex many-body quantum systems where interactions of the neutrons and protons via the strong, the weak, and the electromagnetic forces lead to the emergence of simple patterns of energy states that have been described by various theoretical approaches. One of the goals of all the theoretical models is the development of a universal theory that can be applied across the entire chart of nuclides. Significant progress has been made by experiments as well as the increasing sophistication of models, but a universal theory has yet to be established. A recent reviewof nuclei in the Z = 50–82 region of the chart of nuclides has analyzed all the available compiled data from several decades of studies towards a clarification of the low-lying structure of nuclei. Other reviews have reported and explained the emergence of multiple different shapes in nuclei at somewhat higher excitation energies than the ground state. Somehave challenged the interpretation of the first excited Kπ =0+ band as a vibration of ground state. This work attempts to provide a guide to determining the nature of the first excited Kπ =0+ band in nuclei by the combined use of nuclear lifetimes, energy level evolutions, dynamic moments of inertia, and intrinsic quadrupole moments extracted from transition probabilities. The result is that for a subset of the nuclei in this region, the Kπ =0+ band is consistent with the traditional β-vibration description of an oscillation built on the ground state.

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Cite This Study

Aprahamian et al. (2026) studied this question.

synapsesocial.com/papers/6a168b040c924ddd1bd59d5chttps://doi.org/10.3390/sym18050812
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