English

Transition from direct to sequential two-proton decay in $s$-$d$ shell nuclei

Nuclear Theory 2016-09-28 v2

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 2p2p decays. This is demonstrated by examples of the low-lying 16^{16}Ne state decays. Different forms of transition dynamic are shown to be highly probable beyond the proton dripline for the ss-dd shell nuclei. It is demonstrated that transition dynamic of 2p2p emitters can provide means for extraction of a width of the ground-state resonance of a core+pp subsystem of the core+2p2p system. Practical applicability of the method is demonstrated by properties of the 14^{14}F ground state derived from the 15\mboxNe13 ⁣ ⁣\mboxO+2p^{15}\mbox{Ne}\rightarrow ^{\,13\!\!}\mbox{O}+2p decay data and of the 29^{29}Cl ground state derived from the 30\mboxAr28 ⁣ ⁣\mboxS+2p^{30}\mbox{Ar}\rightarrow ^{\,28\!\!}\mbox{S}+2p decay data.

Keywords

Cite

@article{arxiv.1605.01013,
  title  = {Transition from direct to sequential two-proton decay in $s$-$d$ shell nuclei},
  author = {T. A. Golubkova and X. Xu and L. V. Grigorenko and I. G. Mukha and C. Scheidenberger and M. V. Zhukov},
  journal= {arXiv preprint arXiv:1605.01013},
  year   = {2016}
}

Comments

8 pages, 10 figures

R2 v1 2026-06-22T13:52:26.433Z