Energy and angular momentum sharing in dissipative collisions
arXiv:nucl-ex/0010001 · doi:10.1007/s100500070007
Abstract
Primary and secondary masses of heavy reaction products have been deduced from kinematics and E-ToF measurements, respectively, for the direct and reverse collisions of 93Nb and 116Sn at 25 AMeV. Light charged particles have also been measured in coincidence with the heavy fragments. Direct experimental evidence of the correlation of energy-sharing with net mass transfer has been found using the information from both the heavy fragments and the light charged particles. The ratio of Hydrogen and Helium multiplicities points to a further correlation of angular momentum sharing with net mass transfer.
21 pages, 20 figures. Submitted to European Physics Journal A
Cited by in corpus (4)
- Space and Time pattern of mid-velocity IMF emission in peripheral heavy-ion collisions at Fermi energies
- Comparison of AMD calculations with experimental data for peripheral collisions of 93Nb+93Nb,116Sn at 38 MeV/nucleon
- Production mechanism of hot nuclei in violent collisions in the Fermi energy domain
- Production of cold fragments in nucleus-nucleus collisions in the Fermi-energy domain