Identification of three new ultraluminous X-ray sources in NGC 4631 and NGC 1097: Evidence for stellar-mass black holes
arXiv:2601.08047 · doi:10.1051/0004-6361/202557205
Abstract
Recent observations of galaxies continue to reveal new ultraluminous X-ray sources (ULXs), increasing their known population and improving the statistics needed to understand their nature. We study the ULX populations of NGC 4631 and NGC 1097 using archival Chandra, XMM-Newton, and Swift/XRT observations to identify new ULXs and investigate their X-ray and optical properties. We analyzed X-ray data spanning 2000-2025. Spectral fitting was performed for sources with sufficient counts using absorbed power-law and diskbb models. Variability analyses, including hardness-intensity diagrams and light curves, were used to assess short- and long-term variability. Optical color-magnitude diagrams and near-infrared (NIR) spectral energy distributions (SEDs) were employed to identify possible donor stars. In NGC 4631, we identified two new transient ULXs, X-6 and X-7, with X-ray count rates varying by more than an order of magnitude. The LX-T^4 relation from diskbb fits provides strong evidence that NGC 4631 X-6 is powered by a stellar-mass black hole accreting via a standard disk. The optical sources within the X-ray error circles of X-6 and X-7 are candidate counterparts, suggesting these systems are candidate HMXBs. In NGC 1097, we discovered a new transient ULX, ULX-3, showing X-ray luminosity variations by a factor of about 30 and evidence for spectral state transitions, consistent with either a stellar-mass black hole or a neutron star. We identified a unique optical and NIR counterpart. While the optical emission is variable, the NIR emission is stable. The NIR SED is consistent with a blackbody temperature of about 3300 K, compatible with a red supergiant donor with a radius of about 200 solar radii.
Accepted for publication in Astronomy & Astrophysics (10.1051/0004-6361/202557205)
References in corpus (29)
- X-ray Properties of Black-Hole Binaries
- Modelling the behaviour of accretion flows in X-ray binaries
- An Ultraluminous X-ray Source Powered by An Accreting Neutron Star
- Super-critically accreting stellar-mass black holes as ultraluminous X-ray sources
- An accreting pulsar with extreme properties drives an ultraluminous x-ray source in NGC 5907
- A mass of less than 15 solar masses for the black hole in an ultraluminous X-ray source
- Masses, Beaming and Eddington Ratios in Ultraluminous X-ray Sources
- Ultraluminous X-ray sources
- Ultraluminous X-Ray Sources
- XMM-Newton campaign on the ultraluminous X-ray source NGC 247 ULX-1: outflows
- Long-term X-ray spectral evolution of Ultraluminous X-ray sources: implications on the accretion flow geometry and the nature of the accretor
- Near-infrared counterparts of ultraluminous X-ray sources
- Discovery of a recurrent spectral evolutionary cycle in the ultra-luminous X-ray sources Holmberg II X-1 and NGC 5204 X-1
- New Photometric Calibration of the Wide Field Camera 3 Detectors
- Uncovering Red and Dusty Ultraluminous X-ray Sources with Spitzer
- The (re)appearance of NGC 925 ULX-3, a new transient ULX
- An ultraluminous supersoft source with a 4 hour modulation in NGC 4631
- A New Transient Ultraluminous X-ray Source in NGC 7090
- A new sample of transient ultraluminous X-ray sources serendipitously discovered by Swift/XRT
- Spectral state transitions in Circinus ULX5
- Spitzer IRAC observations of IR excess in Holmberg IX X-1: A circumbinary disk or a variable jet?
- Detection of 125.5-day Optical Periodic Modulation of the Neutron Star M51 ULX-8
- Optical Counterparts of ULXs in NGC 1672
- A transient ultraluminous X-ray source in NGC 55
- Constraint on the accretion of NGC 6946 X-1 using broadband X-ray data
- Digging a little deeper: characterising three new extreme ULX candidates
- New Transient ULX Candidate in NGC 4254: Evidence of Circumbinary Disk?
- Bubble in the Whale: Identifying the Optical Counterparts and Extended Nebula for the Ultraluminous X-ray Sources in NGC 4631
- Unveiling the nature of donor stars of ULXs in NGC 1559