Cluster transfer in the reaction O Pb at energies well below the fusion barrier: A possible doorway to energy dissipation

M Evers, M Dasgupta, DJ Hinde, DH Luong… - Physical Review C …, 2011 - APS
Physical Review C—Nuclear Physics, 2011APS
The reaction 16 O+ 208 Pb is a benchmark in nuclear reaction studies as it involves two
doubly magic nuclei. New measurements of back-scattered projectile-like fragments at sub-
barrier energies show that the probability of two-proton (2 p) transfer is much larger than that
of α-particle transfer. At energies around the fusion barrier the probability for 2 p transfer is∼
10%, similar to that for one-proton transfer. The 2 p transfer probabilities are enhanced by up
to an order of magnitude compared to calculations based on an independent particle picture …
The reaction O Pb is a benchmark in nuclear reaction studies as it involves two doubly magic nuclei. New measurements of back-scattered projectile-like fragments at sub-barrier energies show that the probability of two-proton () transfer is much larger than that of -particle transfer. At energies around the fusion barrier the probability for transfer is , similar to that for one-proton transfer. The transfer probabilities are enhanced by up to an order of magnitude compared to calculations based on an independent particle picture as simulated by the fully microscopic time-dependent Hartree-Fock model (TDHF). Since beyond mean-field correlations like nucleon pairing are not included in the TDHF model, the enhancement indicates strong pairing correlations between the transferred protons. transfer leads to excitation energies (most likely in the target-like nucleus) up to MeV, indicating that it may represent an effective doorway for the dissipation of energy and thus provide a microscopic mechanism toward understanding the inhibition of fusion and energies both above and below the barrier.
American Physical Society
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