A luminous X-ray outburst from an intermediate-mass black hole in an off-centre star cluster
Abstract
A unique signature for the presence of massive black holes in very dense stellar regions is occasional giant-amplitude outbursts of multiwavelength radiation from tidal disruption and subsequent accretion of stars that make a close approach to the black holes. Previous strong tidal disruption event (TDE) candidates were all associated with the centers of largely isolated galaxies. Here we report the discovery of a luminous X-ray outburst from a massive star cluster at a projected distance of 12.5 kpc from the center of a large lenticular galaxy. The luminosity peaked at ~10^{43} erg/s and decayed systematically over 10 years, approximately following a trend that supports the identification of the event as a TDE. The X-ray spectra were all very soft, with emission confined to be <3.0 keV, and could be described with a standard thermal disk. The disk cooled significantly as the luminosity decreased, a key thermal-state signature often observed in accreting stellar-mass black holes. This thermal-state signature, coupled with very high luminosities, ultrasoft X-ray spectra and the characteristic power-law evolution of the light curve, provides strong evidence that the source contains an intermediate-mass black hole (IMBH) with a mass of a few ten thousand solar mass. This event demonstrates that one of the most effective means to detect IMBHs is through X-ray flares from TDEs in star clusters.
Keywords
Cite
@article{arxiv.1806.05692,
title = {A luminous X-ray outburst from an intermediate-mass black hole in an off-centre star cluster},
author = {Dacheng Lin and Jay Strader and Eleazar R. Carrasco and Dany Page and Aaron J. Romanowsky and Jeroen Homan and Jimmy A. Irwin and Ronald A. Remillard and Olivier Godet and Natalie A. Webb and Holger Baumgardt and Rudy Wijnands and Didier Barret and Pierre-Alain Duc and Jean P. Brodie and Stephen D. J. Gwyn},
journal= {arXiv preprint arXiv:1806.05692},
year = {2018}
}
Comments
Published in Nature Astronomy on June 18, 2018. Including supplementary materials