English

TDE fallback cut-off due to a pre-existing accretion disc

High Energy Astrophysical Phenomena 2017-05-24 v2

Abstract

Numerous tidal disruption event (TDE) candidates originating from galactic centres have been detected (e.g., by Swift{\it Swift} and ASASSN). Some of their host galaxies show typical characteristics of a weak active galactic nucleus (AGN), indicative of a pre-existing accretion disc around the supermassive black hole (SMBH). In this work, we develop an analytic model to study how a pre-existing accretion disc affects a TDE. We assume the density of the disc ρRλ\rho\propto R^{-\lambda}, RR being the radial distance from the SMBH and λ\lambda varying between 0.50.5 and 1.51.5. Interactions between the pre-existing accretion disc and the stream of the tidally disrupted star can stall the stream far from the SMBH, causing a sudden drop in the rate of fallback of gas into the SMBH. These interactions could explain the steep cut-off observed in the light curve of some TDE candidates (e.g., Swift{\it Swift} J1644 and Swift{\it Swift} J2058). With our model, it is possible to use the time of this cut-off to constrain some properties pertaining to the pre-existing accretion disc, such as λ\lambda and the disc viscosity parameter α\alpha. We demonstrate this by applying our theory to the TDE candidates Swift{\it Swift} J1644, Swift{\it Swift} J2058 and ASASSN-14li. Our analysis favours a disc profile with λ1\lambda\sim1 for viscosity parameters α0.010.1\alpha\sim0.01-0.1.

Keywords

Cite

@article{arxiv.1701.07826,
  title  = {TDE fallback cut-off due to a pre-existing accretion disc},
  author = {Adithan Kathirgamaraju and Rodolfo Barniol Duran and Dimitrios Giannios},
  journal= {arXiv preprint arXiv:1701.07826},
  year   = {2017}
}

Comments

10 pages, 7 figures

R2 v1 2026-06-22T18:01:47.642Z