Highly deformed $^{40}$Ca configurations in $^{28}$Si + $^{12}$C
nucl-ex
/ Authors
M. Rousseau, C. Beck, C. Bhattacharya, V. Rauch, O. Dorvaux, A. K. Dummer, K. Eddahbi, C. Enaux, R. M. Freeman, F. Haas
and 9 more authors
A. Hachem, D. Mahboub, E. Martin, R. Nouicer, P. Papka, S. J. Sanders, O. Stezowski, A. Szanto de Toledo, S. Szilner
/ Abstract
The possible occurrence of highly deformed configurations in the $^{40}$Ca di-nuclear system formed in the $^{28}$Si + $^{12}$C reaction is investigated by analyzing the spectra of emitted light charged particles. Both inclusive and exclusive measurements of the heavy fragments (A $\geq$ 10) and their associated light charged particles (protons and $α$ particles) have been made at the IReS Strasbourg {\sc VIVITRON} Tandem facility at bombarding energies of $E_{lab} (^{28}$Si) = 112 MeV and 180 MeV by using the {\sc ICARE} charged particle multidetector array. The energy spectra, velocity distributions, and both in-plane and out-of-plane angular correlations of light charged particles are compared to statistical-model calculations using a consistent set of parameters with spin-dependent level densities. The analysis suggests the onset of large nuclear deformation in $^{40}$Ca at high spin.