Allowance for the shell structure of colliding nuclei in the fusion-fission process
The motion of two nuclei toward each other in fusion-fission reactions is considered. The state of the system of interacting nuclei is specified in terms of three collective coordinates (parameters). These are the distance between the centers of mass of the nuclei and the deformation parameter for e...
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Veröffentlicht in: | Physics of atomic nuclei 2011-07, Vol.74 (7), p.1001-1009 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The motion of two nuclei toward each other in fusion-fission reactions is considered. The state of the system of interacting nuclei is specified in terms of three collective coordinates (parameters). These are the distance between the centers of mass of the nuclei and the deformation parameter for each of them (the nose-to-nose orientation of the nuclei is assumed). The evolution of collective degrees of freedom of the system is described by Langevin equations. The energies of the Coulomb and nuclear (Gross-Kalinovsky potential) interactions of nuclei are taken into account in the potential energy of the system along with the deformation energy of each nucleus with allowance for shell effects. The motion of nuclei toward each other are calculated for two reaction types: reactions involving nuclei that are deformed (
42
100
Mo +
42
100
Mo →
84
200
Po) and those that are spherical (
82
208
Pb +
8
18
O →
90
226
Th) in the ground state. It is shown that the shell structure of interacting nuclei affects not only the fusion process as a whole (fusionbarrier height and initial-reaction-energy dependence of the probability that the nuclei involved touch each other) but also the processes occurring in each nucleus individually (shape of the nuclei and their excitation energies at the point of touching). |
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ISSN: | 1063-7788 1562-692X |
DOI: | 10.1134/S1063778811050176 |