Multi-wavelength study of a hyperluminous X-ray source near NGC 6099: a strong IMBH candidate
Abstract
We report on the intriguing properties of a variable X-ray source projected at the outskirts of the elliptical galaxy NGC 6099 ( Mpc). If truly located near NGC 6099, this is a hyperluminous X-ray source that reached an X-ray luminosity a few times erg s in 2012 February (XMM-Newton data), about 50 to 100 times brighter than in 2009 May (Chandra) and 2023 August (XMM-Newton). The X-ray spectrum was soft at all three epochs, with a thermal component at keV and a power-law photon index . Such properties make it a strong candidate for an intermediate mass black hole (IMBH). We also discovered a point-like, blue optical counterpart (~mag, ~mag), from images taken by the Canada-France-Hawaii Telescope, and later confirmed with Hubble Space Telescope observations. The optical continuum can be modeled as stellar emission from a compact star cluster or an X-ray-irradiated accretion disk, consistent with the IMBH scenario. We discuss alternative explanations for the nature of this system. A possible scenario is tidal stripping of an orbiting star, with repeated X-ray outbursts every few years. An alternative possibility is that the thermal X-ray emission seen in 2009 was from shocked gas in the self-intersecting tidal stream during the rising phase of a tidal disruption event, while the 2012 and 2023 emissions were from the fully-formed accretion disk.
Keywords
Cite
@article{arxiv.2503.00904,
title = {Multi-wavelength study of a hyperluminous X-ray source near NGC 6099: a strong IMBH candidate},
author = {Yi-Chi Chang and Roberto Soria and Albert K. H. Kong and Alister W. Graham and Kirill A. Grishin and Igor V. Chilingarian},
journal= {arXiv preprint arXiv:2503.00904},
year = {2025}
}
Comments
30 pages, all 11 figures are in colour, accepted by ApJ