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Study of the fusion-fission process in the 35Cl +24Mg reaction
Authors:C Beck  R Nouicer  D Mahboub  B Djerroud  RM Freeman  A Hachem  T Matsuse  Sl Cavallaro  E De Filippo  G Lanzanó  A Pagano  ML Sperduto  R Dayras  E Berthoumieux  R Legrain  E Pollacco
Institution:(1) Institut de Recherches Subatomiques, Institut National de Physique Nucléaire et de Physique des Particules – Centre National de la Recherche Scientifique/Université Louis Pasteur, B.P.28, F-67037 Strasbourg Cedex 2, France, FR;(2) Dipartimento di Fisica dell'Universitá di Catania, INFN and LNS Catania, I-95129 Catania, Italy, IT;(3) DAPNIA/SPhN, C.E. Saclay, F-91191 Gif sur Yvette Cedex, France, FR
Abstract:Fusion-fission and fully energy-damped binary processes of the 35Cl+24Mg reaction were investigated using particle-particle coincidence techniques at a 35Cl bombarding energy of Elab≈ 8 MeV/nucleon. Inclusive data were also taken in order to determine the partial wave distribution of the fusion process. The fragment-fragment correlation data show that the majority of events arises from a binary-decay process with a relatively large multiplicity of secondary light-charged particles emitted by the two primary excited fragments in the exit channel. No evidence is observed for ternary-breakup processes, as expected from the systematics recently established for incident energies below 15 MeV/nucleon and for a large number of reactions. The binary-process results are compared with predictions of statistical-model calculations. The calculations were performed using the Hauser-Feshbach method, based on the available phase space at the scission point of the compound nucleus. This new method uses temperature-dependent level densities and its predictions are in good agreement with the presented experimental data, thus consistent with the fusion-fission origin of the binary fully-damped yields. Received: 12 March 1998
Keywords:PACS:24  60  Dr Statistical compound-nucleus reactions –  25  70  Gh Compound nucleus –  25  70  Jj Fusion and fusion-fission reaction            25  70  -z Low and intermediate energy heavy-ion reactions
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