Type I X-ray Bursts at Low Accretion Rates
Abstract
Neutron stars, with their strong surface gravity, have interestingly short timescales for the sedimentation of heavy elements. Recent observations of unstable thermonuclear burning (observed as X-ray bursts) on the surfaces of slowly accreting neutron stars ( of the Eddington rate) motivate us to examine how sedimentation of CNO isotopes affects the ignition of these bursts. We further estimate the burst development using a simple one-zone model with a full reaction network. We report a region of mass accretion rates for weak H flashes. Such flashes can lead to a large reservoir of He, the unstable burning of which may explain some observed long bursts (duration s).
Cite
@article{arxiv.astro-ph/0611076,
title = {Type I X-ray Bursts at Low Accretion Rates},
author = {Fang Peng and Edward F. Brown and James W. Truran},
journal= {arXiv preprint arXiv:astro-ph/0611076},
year = {2008}
}
Comments
6 pages, 2 figures, submitted to the proceedings of the conference "The Multicoloured Landscape of Compact Objects and Their Explosive Origins'', 2006 June 11--24, Cefalu, Sicily (Italy), to be published by AIP