An anticorrelation between X-ray luminosity and Hα equivalent width in X-ray binaries

Authors
  • R.I. Hynes
  • M. Goad
Publication date 2009
Journal Monthly Notices of the Royal Astronomical Society
Volume | Issue number 393 | 4
Pages (from-to) 1608-1616
Organisations
  • Faculty of Science (FNWI) - Anton Pannekoek Institute for Astronomy (API)
Abstract
We report an anticorrelation between continuum luminosity and the equivalent width (EW) of the Ha emission line in X-ray binary systems. The effect is evident both in a universal monotonic increase in Ha EW with time following outbursts, as systems fade, and in a comparison between measured EWs and contemporaneous X-ray measurements. The effect is most clear for black hole binaries in the low/hard X-ray state, which is prevalent at X-ray luminosities below similar to 1 per cent of the Eddington luminosity. We do not find strong evidence for significant changes in line profiles across accretion state changes, but this is hampered by a lack of good data at such times. The observed anticorrelation, highly significant for black hole binaries, is only marginally so for neutron star systems, for which there are far less data. Comparison with previously established correlations between optical and X-ray luminosity suggests that the line luminosity is falling as the X-ray and optical luminosities drop, but not as fast, approximately, as L-H alpha alpha L-x(similar to 0.4) alpha L-opt(similar to 0.7) opt. We briefly discuss possible origins for such an effect, including the optical depth, form of the irradiating spectrum and geometry of the accretion flow. Further refinement of the relation in the future may allow measurements of Ha EW to be used to estimate the luminosity of, and hence the distance to, X-ray binary systems. Beyond this, further progress will require a better sample of spectrophotometric data.
Document type Article
Note DOI: 10.1111/j.1365-2966.2008.14299.x; eprintid: arXiv:0811.4260
Language English
Published at https://doi.org/10.1111/j.1365-2966.2008.14299.x
Permalink to this page
Back