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We investigate the effects of the fission fragments on the angular distribution of scission neutrons. The time evolution of the wave function of the scission neutron is obtained by integrating the time-dependent Schrödinger equation. The effects of the re-absorption and scattering by the fission fragments are taken into account by means of the optical potential. The angular distribution is strongly...
We study the angular distribution of the scission neutrons in a time dependent approach. This implies the numerical solution of the bi-dimensional time-dependent Schrödinger equation (TDSE) with time-dependent potential. To describe the axially symmetric extremely deformed nuclear shapes involved, we have used modified Cassini ovals. The Hamiltonian in cylindrical coordinates is discretized on a bi-dimensional...
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