Abstract
The quasi-fission mechanism hinders fusion of heavy systems because of a mass flow between the reactants, leading to a re-separation of more symmetric fragments in the exit channel. A good understanding of the competition between fusion and quasi-fission mechanisms is expected to be of great help to optimize the formation and study of heavy and superheavy nuclei. Quantum microscopic models, such as the time-dependent Hartree-Fock approach, allow for a treatment of all degrees of freedom associated to the dynamics of each nucleon. This provides a description of the complex reaction mechanisms, such as quasi-fission, with no parameter adjusted on reaction mechanisms. In particular, the role of the deformation and orientation of a heavy target, as well as the entrance channel magicity and isospin are investigated with theoretical and experimental approaches. © Owned by the authors 2012.
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CITATION STYLE
Simenel, C., Wakhle, A., Avez, B., Hinde, D. J., Du Rietz, R., Dasgupta, M., … Luong, D. H. (2012). Effects of nuclear structure on quasi-fission. In EPJ Web of Conferences (Vol. 38). https://doi.org/10.1051/epjconf/20123809001
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