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- W2948956975 abstract "Abstract New calculations of fission barrier heights in a five-dimensional (5D) deformation space for actinide nuclei have been performed based on a macro-microscopic (MM) model. To calculate potential energy surface (PES), we use the 5D generalized Lawrence shape (GLS) realistic parameterization as the shape description, the Lublin-Strasbourg Drop (LSD) model for the macroscopic energy and the folded-Yukawa model as the single-particle potential. A method to use two-center oscillator basis in calculating Hamiltonian matrix on any kind of shape description was presented. For the pairing energy, we use the SBCS model. Finally, Strutinsky method is used to calculate the microscopic correction energy. To find the fission barriers and fission paths, some concepts, such as basins, edges and neighbors from geography, are extended to identify the topographical structures on the 5D PES and we assume that the fission path follows the line of steepest descent. The fission barriers and double-humped paths of U and Pu isotopes are calculated." @default.
- W2948956975 created "2019-06-14" @default.
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- W2948956975 date "2019-09-01" @default.
- W2948956975 modified "2023-10-16" @default.
- W2948956975 title "New calculations of five-dimensional fission barriers for actinide nuclei" @default.
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- W2948956975 doi "https://doi.org/10.1016/j.nuclphysa.2019.05.014" @default.
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