Author:
Pomorski Krzysztof,Blanco José M.,Kostryukov Pavel V.,Dobrowolski Artur,Nerlo-Pomorska Bożena,Warda Michał,Xiao Zhi-Gang,Chen Yong-Jing,Liu Li-Le,Tian Jun-Long,Diao Xin-Yue,Wu Qiang-Hua
Abstract
Abstract
Fission properties of the actinide nuclei are deduced from theoretical analysis. We investigate potential energy surfaces and fission barriers and predict the fission fragment mass yields of actinide isotopes. The results are compared with experimental data where available. The calculations were performed in the macroscopic-microscopic approximation with the Lublin-Strasbourg Drop (LSD) for the macroscopic part, and the microscopic energy corrections were evaluated in the Yukawa-folded potential. The Fourier nuclear shape parametrization is used to describe the nuclear shape, including the non-axial degree of freedom. The fission fragment mass yields of the nuclei considered are evaluated within a 3D collective model using the Born-Oppenheimer approximation.
Funder
Polish National Science Center
National Natural Science Foundation of China
Subject
Astronomy and Astrophysics,Instrumentation,Nuclear and High Energy Physics
Cited by
11 articles.
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