Nuclear alpha-clustering, superdeformation, and molecular resonances
Abstract
Nuclear alpha-clustering has been the subject of intense study since the advent of heavy-ion accelerators. Looking back for more than 40 years we are able today to see the connection between quasimolecular resonances in heavy-ion collisions and extremely deformed states in light nuclei. For example superdeformed bands have been recently discovered in light N=Z nuclei such as Ar, Ca, Cr, and Ni by -ray spectroscopy. The search for strongly deformed shapes in N=Z nuclei is also the domain of charged-particle spectroscopy, and our experimental group at IReS Strasbourg has studied a number of these nuclei with the charged particle multidetector array {\sc Icare} at the {\sc Vivitron} Tandem facility in a systematical manner. Recently the search for -decays in Mg has been undertaken in a range of excitation energies where previously nuclear molecular resonances were found in C+C collisions. The breakup reaction MgC has been investigated at E(Mg) = 130 MeV, an energy which corresponds to the appropriate excitation energy in Mg for which the C+C resonance could be related to the breakup resonance. Very exclusive data were collected with the Binary Reaction Spectrometer in coincidence with {\sc Euroball IV} installed at the {\sc Vivitron}.
Cite
@article{arxiv.nucl-th/0401005,
title = {Nuclear alpha-clustering, superdeformation, and molecular resonances},
author = {C. Beck},
journal= {arXiv preprint arXiv:nucl-th/0401005},
year = {2009}
}
Comments
10 pages, 4 eps figures included. Invited Talk 10th Nuclear Physics Workshop Marie and Pierre Curie, Kazimierz Dolny Poland, Sep. 24-28, 2003; To be published in International Journal of Modern Physics E