Angular anisotropy of the fusion-fission and quasifission fragments

Abstract

The anisotropy in the angular distribution of the fusion-fission and quasifission fragments for the 16O+238U, 19F+208Pb and 32S+208Pb reactions is studied by analyzing the angular momentum distributions of the dinuclear system and compound nucleus which are formed after capture and complete fusion, respectively. The orientation angles of axial symmetry axes of colliding nuclei to the beam direction are taken into account for the calculation of the variance of the projection of the total spin onto the fission axis. It is shown that the deviation of the experimental angular anisotropy from the statistical model picture is connected with the contribution of the quasifission fragments which is dominant in the 32S+208Pb reaction. Enhancement of anisotropy at low energies in the 16O+238U reaction is connected with quasifission of the dinuclear system having low temperature and effective moment of inertia.

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