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Competition of break-up and dissipative processes in peripheral collisions at Fermi energies

T. I. MikhailovaJoint Institute for Nuclear Research , Dubna , Moscow region , RussiaA.G. ArtyukhJoint Institute for Nuclear Research , Dubna , Moscow region , RussiaM. ColonnaLaboratori Nazionali del Sud , Istituto Nazionale di Fisica Nucleare , Catania , ItalyM. Di ToroIstituto Nazionale di Fisica Nucleare, Laboratori Nazionali del SudB. ErdemchimegNational University of MongoliaG. KamińskiInstitute of Nuclear Physics PAN , Krakow , PolandI.N. MikhailovJoint Institute for Nuclear Research , Dubna , Moscow region , RussiaYu. M. SeredaInstitute for Nuclear Research National Academy of Sciences of Ukraine , Kyiv , UkraineH.H. WolterTechnical University of MunichLaboratori Nazionali del Sud, Istituto Nazionale di Fisica Nucleare, Catania, Italy
2009en
ABI

Аннотация

Heavy ion collisions in the Fermi energy regime may simultaneously show features of direct and dissipative processes. To investigate this behavior in detail, we study isotope and velocity distributions of projectile-like fragments in the reactions 18O (35 MeV/A) + 9Be(181Ta) at forward angles. We decompose the experimental velocity distributions empirically into two contributions: a direct, 'break-up' component centered at beam velocity and a dissipative component at lower velocities leading to a tail of the velocity distributions. The direct component is interpreted in the Goldhaber model, and the widths of the velocity distributions are extracted. The dissipative component is then successfully described by transport calculations. The ratio of the yields of the direct and the dissipative contributions can be understood from the behavior of the deflection functions. The isotope distributions of the dissipative component agree qualitatively with the data, but the modification due to secondary de-excitation needs to be considered. We conclude that such reactions are of interest to study the equilibration mechanism in heavy ion collisions.

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