First application of Markov Chain Monte Carlo-based Bayesian data analysis to the Doppler-Shift Attenuation Method
Abstract
Motivated primarily by the large uncertainties in the thermonuclear rate of the PS reaction that limit our understanding of classical novae, we carried out lifetime measurements of S excited states using the Doppler Shift Lifetimes (DSL) facility at the TRIUMF Isotope Separator and Accelerator (ISAC-II) facility. The S excited states were populated by the HeSS reaction. The deexcitation rays were detected by a clover-type high-purity germanium detector in coincidence with the particles detected by a silicon detector telescope. We have applied modern Markov chain Monte Carlo-based Bayesian methods to perform lineshape analyses of Doppler-shift attenuation method -ray data for the first time. We have determined the lifetimes of the two lowest-lying S excited states. First experimental upper limits on the lifetimes of four higher-lying states have been obtained. The experimental results were compared to shell-model calculations using five universal -shell Hamiltonians. Evidence for rays originating from the astrophysically important , 260-keV PS resonance has also been observed, although strong constraints on the lifetime will require better statistics.
Cite
@article{arxiv.2203.10336,
title = {First application of Markov Chain Monte Carlo-based Bayesian data analysis to the Doppler-Shift Attenuation Method},
author = {L. J. Sun and C. Fry and B. Davids and N. Esker and C. Wrede and M. Alcorta and S. Bhattacharjee and M. Bowry and B. A. Brown and T. Budner and R. Caballero-Folch and L. Evitts and M. Friedman and A. B. Garnsworthy and B. E. Glassman and G. Hackman and J. Henderson and O. S. Kirsebom and A. Kurkjian and J. Lighthall and P. Machule and J. Measures and M. Moukaddam and J. Park and C. Pearson and D. Pérez-Loureiro and C. Ruiz and P. Ruotsalainen and J. Smallcombe and J. K. Smith and D. Southall and J. Surbrook and M. Williams and L. E. Weghorn},
journal= {arXiv preprint arXiv:2203.10336},
year = {2023}
}