Transition from direct to sequential two-proton decay in - shell nuclei
arXiv:1605.01013 · doi:10.1016/j.physletb.2016.09.034
Abstract
Transitions among different mechanisms of two-proton decay are studied in general. The introduced improved direct-decay model generalizes the semi-analytical models used before and provides flawless phenomenological description of three-body correlations in decays. This is demonstrated by examples of the low-lying Ne state decays. Different forms of transition dynamic are shown to be highly probable beyond the proton dripline for the - shell nuclei. It is demonstrated that transition dynamic of emitters can provide means for extraction of a width of the ground-state resonance of a core+ subsystem of the core+ system. Practical applicability of the method is demonstrated by properties of the F ground state derived from the $^{15}\mbox{Ne}\rightarrow ^{\,13\!\!}\mbox{O}+2p$ decay data and of the Cl ground state derived from the $^{30}\mbox{Ar}\rightarrow ^{\,28\!\!}\mbox{S}+2p$ decay data.
8 pages, 10 figures