Published May 8, 2007 | Version v1
Journal article

Experimental measurements of the 15O(alpha,gamma)19Ne reaction rate and the stability of thermonuclear burning on accreting neutron stars

Description

Neutron stars in close binary star systems often accrete matter from their companion stars. Thermonuclear ignition of the accreted material in the atmosphere of the neutron star leads to a thermonuclear explosion which is observed as an X-ray burst occurring periodically between hours and days depending on the accretion rate. The ignition conditions are characterized by a sensitive interplay between the accretion rate of the fuel supply and its depletion rate by nuclear burning in the hot CNO cycle and the rp-process. For accretion rates close to stable burning the burst ignition therefore depends critically on the hot CNO breakout reaction 15O(α, γ)19Ne that regulates the flow between the hot CNO cycle and the rapid proton capture process. Until recently, the 15O(α, γ)19Ne reaction rate was not known experimentally and the theoretical estimates carried significant uncertainties. In this paper we perform a parameter study of the uncertainty of this reaction rate and determine the astrophysical consequences of the first measurement of this reaction rate. Our results corroborate earlier predictions and show that theoretically burning remains unstable up to accretion rates near the Eddington limit, in contrast to astronomical observations

Availability note (English)

Available from https://e-reports-ext.llnl.gov/pdf/347383.pdf

Additional details

Publishing Information

Journal Title
Astrophysical Journal
Journal Volume
665
Journal Page Range
vp.
ISSN
0004-637X
CODEN
ASJOAB

Optional Information

Contract/Grant/Project number
W-7405-ENG-48
Notes
PDF-FILE: 10 ; SIZE: 0.3 MBYTES
Funding organization
US Department of Energy (United States)
Secondary number(s)
UCRL-JRNL--230876