Implications of the delayed 2013 outburst of the ESO 243-49 HLX-1
arXiv:1408.1819 · doi:10.1088/0004-637X/793/2/105
Abstract
After showing four outbursts spaced by year from 2009 to 2012, the hyper luminous X-ray source ESO 243-49 HLX-1, currently the best intermediate mass black hole (IMBH) candidate, showed an outburst in 2013 delayed by more than a month. In Lasota et al. (2011), we proposed that the X-ray lightcurve is the result of enhanced mass transfer episodes at periapsis from a donor star orbiting the IMBH in a highly eccentric orbit. In this scenario, the delay can be explained only if the orbital parameters can change suddenly from orbit to orbit. To investigate this, we ran Newtonian smooth particle hydrodynamical simulations starting with an incoming donor approaching an IMBH on a parabolic orbit. We survey a large parameter space by varying the star-to-BH mass ratio () and the periapsis separation from 2.2 to with , the tidal radius. To model the donor, we choose several polytropes (; ; & ). Once the system is formed, the orbital period decreases until reaching a minimum. Then, the period tends to increase over several periapsis passages due to tidal effects and increasing mass transfer, leading ultimately to the ejection of the donor. The development of stochastic fluctuations inside the donor could lead to sudden changes in the orbital period from orbit to orbit with the appropriate order of magnitude of what has been observed for HLX-1. Given the constraints on the BH mass () and assuming that HLX-1 is currently near a minimum in period of yr, the donor has to be a white dwarf or a stripped giant core. We predict that if HLX-1 is indeed emerging from a minimum in orbital period, then the period would generally increase with each passage, although substantial stochastic fluctuations can be superposed on this trend.
22 pages, 10 figures, accepted for publication in ApJ (acceptance date: 2014-08-01)
References in corpus (7)
- X-ray Properties of Black-Hole Binaries
- Super-critically accreting stellar-mass black holes as ultraluminous X-ray sources
- X-ray observations of ultraluminous X-ray sources
- X-rays from the Globular Cluster G1: Intermediate Mass Black Hole or Low Mass X-ray Binary?
- Chandra and Swift Follow-up Observations of the Intermediate Mass Black Hole in ESO243-49
- HLX-1 may be an SS433 system
- Orbital circularisation of white dwarfs and the formation of gravitational radiation sources in star clusters containing an intermediate mass black hole
Cited by in corpus (18)
- Observational evidence for intermediate-mass black holes
- Ultraluminous X-ray sources
- Repeating tidal disruptions in GSN 069: Long-term evolution and constraints on quasi-periodic eruptions' models
- Intermediate mass black holes from stellar mergers in young star clusters
- A 78 Day X-ray Period Detected from NGC 5907 ULX1 by Swift
- body dynamics of Intermediate mass-ratio inspirals in globular clusters
- On the radio properties of the intermediate-mass black hole candidate ESO 243-49 HLX-1
- Rapid evolution of the recurrence time in the repeating partial tidal disruption event eRASSt J045650.3-203750
- Partial Tidal Disruption of Main-Sequence Stars by Intermediate-Mass Black Holes
- Statistical study of a large and cleaned sample of ultraluminous and hyperluminous X-ray sources
- Models of Ultra-Luminous X-ray transient sources
- Investigation of X-ray timing and spectral properties of ESO 243-49 HLX-1 with long-term Swift Monitoring
- On the origin of the HLX-1 outbursts
- Tidal disruption events and quasi periodic eruptions
- SN 2022jli: The ultraluminous birth of a low-mass X-ray binary
- The population of hyperluminous X-ray sources as seen by XMM-Newton
- Hydrodynamics of Collisions and Close Encounters between Stellar Black Holes and Main-sequence Stars
- Automatic detection of tidal disruption events and other long duration transients in XMM-Newton data