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arXiv:2201.08268·v1·Nuclear Theory

On the Stability of Superheavy Nuclei

Krzysztof Pomorski🇵🇱 · Artur Dobrowolski🇵🇱 · Bozena Nerlo-Pomorska🇵🇱 · Michal Warda🇵🇱 · Johann Bartel🇫🇷 · Zhigang Xiao🇨🇳 · Yongjing Chen🇨🇳 · Lile Liu🇨🇳 · Jun-Long Tian🇨🇳 · Xinyue Diao🇨🇳

Abstract

Potential energy surfaces of even-even superheavy nuclei are evaluated within the macroscopic-microscopic approximation. A very rapidly converging analytical Fourier-type shape parametrization is used to describe nuclear shapes throughout the periodic table, including those of fissioning nuclei. The Lublin Strasbourg Drop and another effective liquid-drop type mass formula are used to determine the macroscopic part of nuclear energy. The Yukawa-folded single-particle potential, the Strutinsky shell-correction method, and the BCS approximation for including pairing correlations are used to obtain microscopic energy corrections. The evaluated nuclear binding energies, fission-barrier heights, and Q-alpha energies show a relatively good agreement with the experimental data. A simple one-dimensional WKB model a la Swiatecki is used to estimate spontaneous fission lifetimes, while alpha-decay probabilities are obtained within a Gamow-type model.

Comments: 13 pages, 19 figures

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