English

Masses, Beaming and Eddington Ratios in Ultraluminous X-ray Sources

Astrophysics 2009-11-13 v1

Abstract

I suggest that the beaming factor in bright ULXs varies as bm˙2b \propto \dot m^{-2}, where m˙\dot m is the Eddington ratio for accretion. This is required by the observed universal LsoftT4L_{\rm soft} \propto T^{-4} relation between soft--excess luminosity and temperature, and is reasonable on general physical grounds. The beam scaling means that all observable properties of bright ULXs depend essentially only on the Eddington ratio m˙\dot m, and that these systems vary mainly because the beaming is sensitive to the Eddington ratio. This suggests that bright ULXs are stellar--mass systems accreting at Eddington ratios of order 10 -- 30, with beaming factors b\ga0.1b \ga 0.1. Lower--luminosity ULXs follow bolometric (not soft--excess) LT4L \sim T^4 correlations and probably represent {\it sub}--Eddington accretion on to black holes with masses 10\msun\sim 10\msun. High--mass X-ray binaries containing black holes or neutron stars and undergoing rapid thermal-- or nuclear--timescale mass transfer are excellent candidates for explaining both types. If the bm˙2b \propto \dot m^{-2} scaling for bright ULXs can be extrapolated to the Eddington ratios found in SS433, some objects currently identified as AGN at modest redshifts might actually be ULXs (`pseudoblazars'). This may explain cases where the active source does not coincide with the centre of the host galaxy.

Keywords

Cite

@article{arxiv.0811.1473,
  title  = {Masses, Beaming and Eddington Ratios in Ultraluminous X-ray Sources},
  author = {A. R. King},
  journal= {arXiv preprint arXiv:0811.1473},
  year   = {2009}
}

Comments

MNRAS Letters, in press