Are Delayed Radio Flares Common in Tidal Disruption Events? The Case of the TDE iPTF16fnl
arXiv:2109.10921 · doi:10.3847/2041-8213/ac25fe
Abstract
Radio emission from tidal disruption events (TDEs) originates from an interaction of an outflow with the super-massive black hole (SMBH) circum nuclear material (CNM). In turn, this radio emission can be used to probe properties of both the outflow launched at the event and the CNM. Until recently, radio emission was detected only for a relatively small number of events. While the observed radio emission pointed to either relativistic or sub-relativistic outflows of different nature, it also indicated that the outflow has been launched shortly after the stellar disruption. Recently, however, delayed radio flares, several months and years after stellar disruption, were reported in the case of the TDE ASASSN-15oi. These delayed flares suggest a delay in the launching of outflows and thus may provide new insights into SMBH accretion physics. Here, we present a new radio dataset of another TDE, iPTF16fnl, and discuss the possibility that a delayed radio flare has been observed also in this case, ~ 5 months after optical discovery, suggesting that this phenomenon may be common in TDEs. Unlike ASASSN-15oi, the data for iPTF16fnl is sparse and the delayed radio flare can be explained by several alternative models: among them are a complex varying CNM density structure and a delayed outflow ejection.
Accepted for publication in ApJ Letters (8 pages, 4 figures, 1 table)
References in corpus (6)
- General Relativistic Hydrodynamic Simulation of Accretion Flow from a Stellar Tidal Disruption
- A tidal disruption event coincident with a high-energy neutrino
- Radio Properties of Tidal Disruption Events
- Delayed Radio Flares from a Tidal Disruption Event
- Rapid accretion state transitions following the tidal disruption event AT2018fyk
- X-ray binary accretion states in Active Galactic Nuclei? Sensing the accretion disc of supermassive black holes with mid-infrared nebular lines
Cited by in corpus (18)
- AT2019azh: an unusually long-lived, radio-bright thermal tidal disruption event
- Cooling Envelope Model for Tidal Disruption Events
- The Tidal Disruption Event AT2021ehb: Evidence of Relativistic Disk Reflection, and Rapid Evolution of the Disk-Corona System
- A Late-Time Radio Flare following a Possible Transition in Accretion State in the Tidal Disruption Event AT 2019azh
- A radio-emitting outflow produced by the tidal disruption event AT2020vwl
- Generalized equipartition method from an arbitrary viewing angle
- Radio observations of the tidal disruption event AT2020opy: a luminous non-relativistic outflow encountering a dense circumnuclear medium
- The radio detection and accretion properties of the peculiar nuclear transient AT 2019avd
- Tidal Disruption Events through the Lens of the Cooling Envelope Model
- Late-time X-ray Observations of the Jetted Tidal Disruption Event AT2022cmc: The Relativistic Jet Shuts Off
- Two-component off-axis jet model for radio flares of tidal disruption events
- Radio emission from tidal disruption events produced by the collision between super-Eddington outflows and the circumnuclear medium
- Transient radio emission from low-redshift galaxies at z<0.3 revealed by VLASS and FIRST surveys
- Quasi-perpendicular shock acceleration and TDE radio flares
- Searching for Radio Transients with Inverted Spectra in Epoch 1 of VLASS and VCSS, and Identification of a Sample of Candidate Relativistic Nuclear Transients
- Radio Variability in Recently-Quenched Galaxies: The Impact of TDE or AGN Driven Outflows
- What Do Radio Emission Constraints Tell Us About Little Red Dots as Tidal Disruption Events?
- A Mildly Relativistic Outflow Launched Two Years after Disruption in the Tidal Disruption Event AT2018hyz