English

Doppler Broadening in $^{20}$Mg($\beta p\gamma$)$^{19}$Ne Decay

Nuclear Experiment 2019-06-12 v1

Abstract

Background: The 15^{15}O(α,γ\alpha ,\gamma)19^{19}Ne bottleneck reaction in Type I x-ray bursts is the most important thermonuclear reaction rate to constrain experimentally, in order to improve the accuracy of burst light-curve simulations. A proposed technique to determine the thermonuclear rate of this reaction employs the 20^{20}Mg(βpα\beta p\alpha)15^{15}O decay sequence. The key 15^{15}O(α,γ\alpha ,\gamma)19^{19}Ne resonance at an excitation of 4.03 MeV is now known to be fed in 20^{20}Mg(βpγ\beta p\gamma)19^{19}Ne; however, the energies of the protons feeding the 4.03 MeV state are unknown. Knowledge of the proton energies will facilitate future 20^{20}Mg(βpα\beta p \alpha)15^{15}O measurements. Purpose: To determine the energy of the proton transition feeding the 4.03 MeV state in 19^{19}Ne. Method: A fast beam of 20^{20}Mg was implanted into a plastic scintillator, which was used to detect β\beta particles. 16 high purity germanium detectors were used to detect γ\gamma rays emitted following βp\beta p decay. A Monte Carlo method was used to simulate the Doppler broadening of 19^{19}Ne γ\gamma rays and compare to the experimental data. Results: The center of mass energy between the proton and 19^{19}Ne, feeding the 4.03 MeV state, is measured to be 1.210.22+0.25{^{+0.25}_{-0.22}} MeV, corresponding to a 20^{20}Na excitation energy of 7.440.22+0.25{^{+0.25}_{-0.22}} MeV. Absolute feeding intensities and γ\gamma-decay branching ratios of 19^{19}Ne states were determined including the 1615 keV state. A new γ\gamma decay branch from the 1536 keV state in 19^{19}Ne to the ground state is reported. The lifetime of the 1507 keV state in 19^{19}Ne is measured to be 4.31.1+1.3{^{+1.3}_{-1.1}} ps resolving discrepancies in the literature. Conflicting 20^{20}Mg(βp\beta p) decay schemes in published literature are clarified.

Keywords

Cite

@article{arxiv.1901.01966,
  title  = {Doppler Broadening in $^{20}$Mg($\beta p\gamma$)$^{19}$Ne Decay},
  author = {Brent E. Glassman and David Pérez-Loureiro and Chris Wrede and Jacob Allen and Dan W. Bardayan and Michael B. Bennett and Kelly A. Chipps and Michael Febbraro and Moshe Friedman and Cathleen Fry and Matt Hall and Oscar Hall and Sean N. Liddick and Patrick O'Malley and Wei Jia Ong and Steven D. Pain and Sarah Schwartz and Praveen Shidling and Harry Sims and Paul Thompson and Helin Zhang},
  journal= {arXiv preprint arXiv:1901.01966},
  year   = {2019}
}

Comments

11 pages, 13 figures