Decay of excited nuclei produced in $^{78,82}$Kr + $^{40}$Ca reactions at 5.5 MeV/nucleon
G. Ademard (GANIL), J.P. Wieleczko (GANIL), J. Gomez Del Campo, M. La, Commara, E. Bonnet (GANIL), M. Vigilante, A. Chbihi (GANIL), J.D. Frankland, (GANIL), E. Rosato, G. Spadaccini, Sh.A. Kalandarov, C. Beck (IPHC), S., Barlini, B. Borderie (IPNO), R. Bougault (LPCC)

TL;DR
This study investigates the decay modes of excited nuclei produced in Kr + Ca reactions at 5.5 MeV/nucleon, revealing fission-like behavior, structure effects, and the limitations of existing models in predicting fragment distributions.
Contribution
It provides experimental data on decay modes and evaluates the effectiveness of theoretical models, highlighting the dinuclear system framework's success in describing fragment distributions.
Findings
High degree of relaxation indicated by kinetic-energy spectra and angular distributions.
Strong odd-even-staggering observed in light-fragment yields, unaffected by neutron content.
The dinuclear system model successfully reproduces overall Z-distribution and yield patterns.
Abstract
Decay modes of excited nuclei are investigated in Kr + Ca reactions at 5.5 MeV/nucleon. Charged products were measured by means of the INDRA array. Kinetic-energy spectra and angular distributions of fragments with atomic number 3 28 indicate a high degree of relaxation and are compatible with a fission-like phenomenon. Persistence of structure effects is evidenced from elemental cross-sections () as well as a strong odd-even-staggering (o-e-s) of the light-fragment yields. The magnitude of the staggering does not significantly depend on the neutron content of the emitting system. Fragment-particle coincidences suggest that the light partners in very asymmetric fission are emitted either cold or at excitation energies below the particle emission thresholds. The evaporation residue cross-section of the Kr + Ca reaction is…
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