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Deformation and Magicity in Heavy Actinides: First Observation of the Ground-State Rotational Band of
Phys. Rev. Lett. 137, 082501 – Published 17 August, 2026
DOI: https://doi.org/10.1103/7gzt-ldn5
Abstract
The ground-state rotational band of (, ) was investigated using two different experimental setups at the JAEA Tandem Accelerator Laboratory. The and transitions were observed in the decay of via coincidence spectroscopy. The energies of the , , and transitions were identified in the prompt -ray spectrum of produced in the multinucleon transfer reaction. The new data reveal that, compared with neighboring fermium isotopes and isotones in the region, has the lowest first excited -state energy, 41.88(16) keV, and the largest kinematic moment of inertia. These properties constitute new evidence for the deformed shell gaps at and , supporting the understanding of as a deformed doubly magic nucleus.
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