Tidal disruption of a super-Jupiter by a massive black hole
arXiv:1304.0397 · doi:10.1051/0004-6361/201220664
Abstract
Aims: A strong, hard X-ray flare was discovered (IGR J12580+0134) by INTEGRAL in 2011, and is associated to NGC 4845, a Seyfert 2 galaxy never detected at high-energy previously. To understand what happened we observed this event in the X-ray band on several occasions. Methods: Follow-up observations with XMM-Newton, Swift, and MAXI are presented together with the INTEGRAL data. Long and short term variability are analysed and the event wide band spectral shape modelled. Results: The spectrum of the source can be described with an absorbed (N_H ~ 7x10^22 cm^{-2}) power law (Γ\simeq 2.2), characteristic of an accreting source, plus a soft X-ray excess, likely to be of diffuse nature. The hard X-ray flux increased to maximum in a few weeks and decreased over a year, with the evolution expected for a tidal disruption event. The fast variations observed near the flare maximum allowed us to estimate the mass of the central black hole in NGC 4845 as ~ 3x10^5 Msun. The observed flare corresponds to the disruption of about 10% of an object with a mass of 14-30 Jupiter. The hard X-ray emission should come from a corona forming around the accretion flow close to the black hole. This is the first tidal event where such a corona has been observed.
8 pages, 10 figures, 4 tables
References in corpus (4)
- X-ray Properties of Black-Hole Binaries
- Stellar disruption by a supermassive black hole: is the light curve really proportional to ?
- On the X-ray, optical emission line and black hole mass properties of local Seyfert galaxies
- Consistency of the black hole mass determination in AGN from the reverberation and the X-ray excess variance method
Cited by in corpus (21)
- Radio Properties of Tidal Disruption Events
- XMMSL1 J074008.2-853927: a tidal disruption event with thermal and non-thermal components
- X-ray properties of TDEs
- Not that long time ago in the nearest galaxy: 3D slice of molecular gas revealed by a 110 years old flare of Sgr A*
- A radio-emitting outflow produced by the tidal disruption event AT2020vwl
- The puzzling source IGR J17361-4441 in NGC 6388: a possible planetary tidal disruption event
- Probabilistic classification of X-ray sources applied to Swift-XRT and XMM-Newton catalogs
- An X-ray and UV flare from the galaxy XMMSL1 J061927.1-655311
- Ultra-Close Encounters of Stars With Massive Black Holes: Tidal Disruption Events With Prompt Hyperaccretion
- Catching jetted tidal disruption events early in millimetre
- Lightcurve Evolution of the nearest Tidal Disruption Event: A late-time, radio-only flare
- Radio observations of the tidal disruption event AT2020opy: a luminous non-relativistic outflow encountering a dense circumnuclear medium
- Active galactic nuclei synapses: X-ray versus optical classifications using artificial neural networks
- The fast transient AT 2023clx in the nearby LINER galaxy NGC 3799 as a tidal disruption of a very low-mass star
- Discovery and Follow-up of ASASSN-23bd (AT 2023clx): The Lowest Redshift and Least Luminous Tidal Disruption Event To Date
- A Luminous X-ray Flare From The Nucleus of The Dormant Bulgeless Spiral Galaxy NGC 247
- Prospect for UV observations from the Moon
- Probing the formation of planetesimals in the Galactic Centre using Sgr A* flares
- Repeating fast radio bursts produced by a strange star interacting with its planet in an eccentric orbit
- Long-term Evolution of the Short-term X-ray Variability of the Jetted TDE Swift J1644+57
- IGR J12580+0134: The Nearest Tidal Disruption Event and its Faint Resurrection