Lightcurve Evolution of the nearest Tidal Disruption Event: A late-time, radio-only flare
arXiv:2111.10441 · doi:10.3847/1538-4357/ac3bba
Abstract
Tidal disruption events (TDEs) occur when a star passes close enough to a galaxy's supermassive black hole to be disrupted by tidal forces. We discuss new observations of IGRJ12580+0134, a TDE observed in NGC 4845 (d=17 Mpc) in November 2010, with the Karl G. Jansky Very Large Array (JVLA). We also discuss a reanalysis of 2010-2011 Swift and XMM-Newton observations, as well as new, late-time Swift observations. Our JVLA observations show a decay of the nuclear radio flux until 2015, when a plateau was seen, and then a significant (~factor 3) radio flare during 2016. The 2016 radio flare was also accompanied by radio spectral changes, but was not seen in the X-rays. We model the flare as resulting from the interaction of the nuclear jet with a cloud in the interstellar medium. This is distinct from late-time X-ray flares in a few other TDEs where changes in the accretion state and/or a fallback event were suggested, neither of which appears possible in this case. Our reanalysis of the Swift and XMM-Newton data from 2011 shows significant evidence for thermal emission from a disk, as well as a very soft power-law. This, in addition to the extreme X-ray flux increase seen in 2010 (a factor of >$100) bolsters the identification of IGRJ12580+0134 as a TDE, not an unusual AGN variability event.
15 pages, 5 figures. Accepted for publication in ApJ
References in corpus (21)
- BAT AGN Spectroscopic Survey - V. X-ray properties of the Swift/BAT 70-month AGN catalog
- Tidal Disruption Events
- Stellar disruption by a supermassive black hole: is the light curve really proportional to ?
- Radio Properties of Tidal Disruption Events
- X-ray Brightening and UV Fading of Tidal Disruption Event ASASSN-15oi
- Measurement of the rate of stellar tidal disruption flares
- A new class of flares from accreting supermassive black holes
- Delayed Radio Flares from a Tidal Disruption Event
- X-ray properties of TDEs
- Tidal disruption of a super-Jupiter by a massive black hole
- Distinguishing Tidal Disruption Events from Impostors
- Mid-infrared flare of TDE candidate PS16dtm: dust echo and implications for the spectral evolution
- Multiwavelength behaviour of the blazar 3C279: decade-long study from -ray to radio
- Rapid late-time X-ray brightening of the tidal disruption event OGLE16aaa
- Radio Emission from the unbound Debris of Tidal Disruption Events
- Long-term radio and X-ray evolution of the tidal disruption event ASASSN-14li
- Extreme Variability and Episodic Lifetime of Quasars
- Shocks in relativistic transverse stratified jets, a new paradigm for radio-loud AGN
- Catching jetted tidal disruption events early in millimetre
- Constraining the long-lived magnetar remnants in short gamma-ray bursts from late-time radio observations
- A possible tidal disruption event candidate in the black hole binary system of OJ 287
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