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Preequilibrium GDR excitation and entrance channel angular momentum effects
Authors:M. Sandoli  L. Campajola  A. De Rosa  A. D’Onofrio  G. Inglima  M. La Commara  A. Ordine  D. Pierroutsakou  V. Roca  M. Romano  M. Romoli  F. Terrasi  M. Trotta  G. Cardella  M. Papa  G. Pappalardo  F. Rizzo  N. Alamanos  F. Auger  A. Gillibert
Affiliation:1. Dipartimento di Scienze Fisiche, Università di Napoli “Federico II”, Napoli, Italy
2. INFN, Sezione di Napoli, Mostra D’Oltremare, Pad. 20, I-80125, Napoli, Italy
3. Dipartimento di Fisica Teorica e Smsa, Università di Salerno, Salerno, Italy
4. Facoltà di Scienze Ambientali, II Università di Napoli, Caserta, Italy
5. Sezione di Catania, INFN, Italy
6. Dipartimento di Fisica, Università di Catania, Italy
7. Laboratorio Nazionale del Sud, INFN, Catania, Italy
8. CEA/DSM/SPhN, CE Saclay, France
Abstract:The energy spectra of the γ-rays emitted in the 35Cl + 92Mo reaction at incident energy E = 260 MeV were measured in coincidence with the ejectiles produced in dissipative reaction events. The cumulative energy spectrum of the γ-rays coming from the decay of the ejectiles was calculated within the statistical model and its comparison to the experimental spectrum evidences an excess in the data for E γ = 8 to 12 MeV. Such an excess, fitted with a Lorentz curve, is attributed to the preequilibrium GDR γ-decay of the intermediate dinuclear system. The centroid energy of the Lorentz curve corresponds to a dipole oscillation along the symmetry axis of the system and its width is found to be comparable to that of the ground state GDR low energy component of the deformed dinucleus. The small quantal dispersion Δ? = (10.3 ± 0.1)? of the entrance channel angular momentum, determined by analysing the dissipative fragment angular distribution in the framework of the Strutinsky model, is suggested to limit the broadening of the preequilibrium GDR width.
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