8Be cluster emission versus alpha evaporation in 28Si + 12C
Abstract
The possible occurence of highly deformed configurations in the Ca di-nuclear system formed in the Si + C reaction is investigated by analyzing the spectra of emitted light charged particles. Both inclusive and exclusive measurements of the heavy fragments (A 10) and their associated light charged particles (protons and particles) have been made at the IReS Strasbourg {\sc VIVITRON} Tandem facility at bombarding energies of (Si) = 112 MeV and 180 MeV by using the {\sc ICARE} charged particle multidetector array. The energy spectra, velocity distributions, 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. This spin dependence approach suggests the onset of large nuclear deformation in Ca at high spin. This conclusion might be connected with the recent observation of superdeformed bands in the Ca nucleus. The analysis of particles in coincidence with S fragments suggests a surprisingly strong Be cluster emission of a binary nature.
Cite
@article{arxiv.nucl-ex/0201021,
title = {8Be cluster emission versus alpha evaporation in 28Si + 12C},
author = {M. Rousseau and C. Beck and C. Bhattacharya and V. Rauch and O. Dorvaux and K. Eddahbi and C. Enaux and R. M. Freeman and F. Haas and D. Mahboub and R. Nouicer and P. Papka and O. Stezowski and S. Szilner},
journal= {arXiv preprint arXiv:nucl-ex/0201021},
year = {2007}
}
Comments
39 pages 15 figures