Molecular resonance phenomena and alpha-clustering: recent progress and perspectives
Abstract
The connection between molecular resonance phenomena in light heavy-ion collisions, alpha-clustering and extremely deformed states in light -like nuclei is discussed. For example, the superdeformed bands recently discovered in light N=Z nuclei such as Ar, Ca, Cr, and Ni by -ray spectroscopy may have a special link with resonant states in collisions with -like nuclei. The resonant reactions involving identical bosons such as C+C, O+O Mg+Mg and Si+Si are of interest. For instance, a butterfly mode of vibration of the J = 38 resonance of Si+Si has been discovered in recent particle -ray angular correlations measurements. The search for signatures of strongly deformed shapes and clustering in light N=Z nuclei is also the domain of charged particle spectroscopy. The investigation of -decays in Mg has been undertaken for excitation energies where previously nuclear molecular resonances were found in C+C collisions. In this case the C-C scattering states can be related to the breakup resonance and, tentatively, to the resonant radiative capture C+C reaction.
Cite
@article{arxiv.nucl-ex/0401004,
title = {Molecular resonance phenomena and alpha-clustering: recent progress and perspectives},
author = {C. Beck},
journal= {arXiv preprint arXiv:nucl-ex/0401004},
year = {2009}
}
Comments
7 pages, 3 figures included. Invited Talk 8th Int. Conf. on Clustering Aspects of Nuclear Structure and Dynamics, Nara, Japan, Nov. 24-29, 2003; To be published in Nucl. Phys. A