Rapid accretion state transitions following the tidal disruption event AT2018fyk
Thomas Wevers, Dheeraj R. Pasham, Sjoert van Velzen, James C.A., Miller-Jones, Phil Uttley, Keith Gendreau, Ronald Remillard, Zaven, Arzoumanian, Michael Loewenstein, and Ani Chiti

TL;DR
This study presents two years of multi-wavelength observations of the TDE AT2018fyk, revealing accretion state transitions similar to stellar-mass black holes, and demonstrates how TDEs can probe SMBH accretion physics across mass scales.
Contribution
It provides detailed observational evidence of accretion state transitions in a TDE, highlighting their similarity to stellar-mass black hole outbursts and enabling scale-invariant studies of SMBH accretion.
Findings
Identification of three distinct accretion states and two transitions.
X-ray spectral transition from soft to hard state at ~2% Eddington luminosity.
Late-time transition from hard to quiescent state with significant luminosity drop.
Abstract
Following a tidal disruption event (TDE), the accretion rate can evolve from quiescent to near-Eddington levels and back over months - years timescales. This provides a unique opportunity to study the formation and evolution of the accretion flow around supermassive black holes (SMBHs). We present two years of multi-wavelength monitoring observations of the TDE AT2018fyk at X-ray, UV, optical and radio wavelengths. We identify three distinct accretion states and two state transitions between them. These appear remarkably similar to the behaviour of stellar-mass black holes in outburst. The X-ray spectral properties show a transition from a soft (thermal-dominated) to a hard (power-law dominated) spectral state around Lfew L, and the strengthening of the corona over time 100--200 days after the UV/optical peak. Contemporaneously, the…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Galaxies: Formation, Evolution, Phenomena
