X-rays from the Globular Cluster G1: Intermediate Mass Black Hole or Low Mass X-ray Binary?
arXiv:astro-ph/0605049 · doi:10.1086/505344
Abstract
The globular cluster G1 (Mayall II) in M31 is the most massive (~10^7 M_sun) stellar cluster in the Local Group, and it has the highest central velocity dispersion (~28 km/s). It has been claimed to host a central ~20,000 M_sun black hole, but these claims have been controversial. We report here the XMM-Newton detection of X-ray emission from G1 at a level of Lx ~ 2x10^{36} erg/s. This emission could be the result of Bondi-Hoyle accretion of ionized cluster gas by a central black hole, or it could be produced by a conventional low-mass X-ray binary. A precise localization of the X-ray emission, which is not possible with the current XMM data, could distinguish between these possibilities. While such a measurement may be difficult, it is of sufficient potential importance to pursue.
accepted to ApJL
Cited by in corpus (21)
- A New Sample of Low-mass Black Holes in Active Galaxies
- Observational evidence for intermediate-mass black holes
- Gemini and Hubble Space Telescope Evidence for an Intermediate Mass Black Hole in omega Centauri
- The Coincidence of Nuclear Star Clusters and Active Galactic Nuclei
- Atypical Thermonuclear Supernovae from Tidally Crushed White Dwarfs
- Radio Emission from the Intermediate-mass Black Hole in the Globular Cluster G1
- Evidence for an intermediate-mass black hole in the globular cluster NGC 6624
- Simulating Black Hole White Dwarf Encounters
- Implications of the delayed 2013 outburst of the ESO 243-49 HLX-1
- Gravitational wave of intermediate-mass black holes in Population III star clusters
- VLA Limits for Intermediate Mass Black Holes in Three Globular Clusters
- A mass estimate of an intermediate-mass black hole in omega Centauri
- Intermediate mass black holes in globular clusters: effects on jerks and jounces of millisecond pulsars
- The MODEST questions: challenges and future directions in stellar cluster research
- Intermediate-mass black hole binary parameter estimation with next-generation ground-based detector networks
- Implications of Intermediate Mass Black Hole in globular cluster G1 on Dark Matter detection
- Compact objects in globular clusters
- Gravitational Dynamics of Large Stellar Systems
- Probing Dark Contents in Globular Clusters With Timing Effects of Pulsar Acceleration
- Tidally-induced thermonuclear Supernovae
- Search of Intermediate Mass Black Holes at Low Redshift with Intra-night Variability