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Fusion-evaporation cross-sections for 48Ca + 154Sm near the Coulomb barrier
Authors:A. M. Stefanini  M. Trotta  B. R. Behera  L. Corradi  E. Fioretto  A. Gadea  A. Latina  S. Szilner  Y. W. Wu  S. Beghini  G. Montagnoli  F. Scarlassara  A. Yu. Chizhov  I. M. Itkis  N. A. Kondratiev  I. V. Pokrovskiy  R. N. Sagaidak  G. N. Kniajeva  E. M. Kozulin  V. M. Voskressensky  S. Courtin  F. Haas  N. Rowley
Affiliation:(1) INFN - Laboratori Nazionali di Legnaro, viale dell"rsquo"Università 2, I-35020 Legnaro (Padova), Italy;(2) INFN - Sezione di Napoli and Dipartimento di Fisica, Università di Napoli, Italy;(3) Dipartimento di Fisica, Università di Padova and INFN, Sezione di Padova, Padova, Italy;(4) Flerov Laboratory of Nuclear Reactions, JINR, 141980 Dubna, Moscow region, Russia;(5) IReS, UMR 7500, IN2P3-CNRS/Université Louis Pasteur, B.P. 28, F-67037 Strasbourg Cedex 2, France
Abstract:Measurements of fusion-evaporation cross-sections for the system 48Ca + 154Sm have been performed in the sub- and near-barrier energy range. Barrier-passing cross-sections have been obtained by adding recently measured capture-fission cross-sections at the same energies, and the barrier distribution for capture has been extracted. The data have been analyzed within a coupled-channel model, and a large subbarrier cross-section enhancement is observed, due to the ground-state prolate deformation of 154Sm. The 48Ca + 154Sm capture cross-sections are compared to existing data on 16O + 186W fusion, leading to the same CN, where a few higher-energy points have also been measured. The evaporation residue cross-sections for the two systems above the barrier indicate that complete fusion is inhibited for 48Ca + 154Sm by ap 40% in that energy region, with respect to 16O + 186W.
Keywords:25.70.-z Low and intermediate energy heavy-ion reactions  25.70.Jj Fusion and fusion-fission reactions
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