arXiv:0809.3685·v1·Nuclear Theory
Role of the target orientation angle and orbital angular momentum in the evaporation residue production
Giovanni Fazio🇮🇹 · Giorgio Giardina🇮🇹 · Francis Hanappe🇧🇪 · Giuseppe Mandaglio🇮🇹 · Marina Manganaro🇮🇹 · Akhtam I. Muminov🇺🇿 · Avazbek K. Nasirov🇺🇿 · Carmelo Sacca🇮🇹
Abstract
The influence of the orientation angles of the target nucleus symmetry axis relative to the beam direction on the production of the evaporation residues is investigated for the Ca+Sm reaction as a function of the beam energy. At low energies (137 MeV), the yield of evaporation residues is observed only for collisions with small orientation angles (). At large energies (about 140--180 MeV) all the orientation angles can contribute to the evaporation residue cross section in the 10--100 mb range, and at 180 MeV ranges around 0.1--10 mb because the fission barrier for a compound nucleus decreases by increasing its excitation energy and angular momentum.
Comments: 20 pages, 10 figures, submitted to JPSJ