English

Sedimentation and Type I X-ray Bursts at Low Accretion Rates

Astrophysics 2008-11-26 v1

Abstract

Neutron stars, with their strong surface gravity, have interestingly short timescales for the sedimentation of heavy elements. Motivated by observations of Type I X-ray bursts from sources with extremely low persistent accretion luminosities, LX<1036\usp\ergspersecond(0.01\ensuremathLEddL_X < 10^{36}\usp\ergspersecond (\simeq 0.01\ensuremath{L_{\mathrm{Edd}}}), we study how sedimentation affects the distribution of isotopes and the ignition of H and He in the envelope of an accreting neutron star. For local mass accretion rates \mdot102\medd\mdot \lesssim 10^{-2}\medd (for which the ignition of H is unstable), where \medd=8.8×104\nsp\gpscps\medd = 8.8\times 10^{4}\nsp\gpscps, the helium and CNO elements sediment out of the accreted fuel before reaching a temperature where H would ignite. Using one-zone calculations of the thermonuclear burning, we find a range of accretion rates for which the unstable H ignition does not trigger unstable He burning. This range depends on the emergent flux from reactions in the deep neutron star crust; for F=0.1\nsp\MeV(m˙/\mb)F = 0.1\nsp\MeV(\dot{m}/\mb), the range is 3×103\medd\mdot102\medd3\times 10^{-3}\medd\lesssim\mdot\lesssim 10^{-2}\medd. We speculate that sources accreting in this range will build up a massive He layer that later produces an energetic and long X-ray burst. At mass accretion rates lower than this range, we find that the H flash leads to a strong mixed H/He flash. Surprisingly, even at accretion rates \mdot0.1\medd\mdot \gtrsim 0.1\medd, although the H and He do not completely segregate, the H abundance at the base of the accumulated layer is still reduced. While following the evolution of the X-ray burst is beyond the scope of this introductory paper, we note that the reduced proton-to-seed ratio favors the production of \iso{12}{C}--an important ingredient for subsequent superbursts.

Keywords

Cite

@article{arxiv.astro-ph/0609583,
  title  = {Sedimentation and 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/0609583},
  year   = {2008}
}

Comments

15 pages, 14 figures, submitted to ApJ, revised version