English

Extreme variability in an active galactic nucleus: Gaia16aax

High Energy Astrophysical Phenomena 2020-01-29 v1 Astrophysics of Galaxies

Abstract

We present the results of a multi-wavelength follow up campaign for the luminous nuclear transient Gaia16aax, which was first identified in January 2016. The transient is spatially consistent with the nucleus of an active galaxy at z=0.25, hosting a black hole of mass 6×108M\rm \sim6\times10^8M_\odot. The nucleus brightened by more than 1 magnitude in the Gaia G-band over a timescale of less than one year, before fading back to its pre-outburst state over the following three years. The optical spectra of the source show broad Balmer lines similar to the ones present in a pre-outburst spectrum. During the outburst, the Hα\rm H\alpha and Hβ\rm H\beta emission lines develop a secondary peak. We also report on the discovery of two transients with similar light curve evolution and spectra: Gaia16aka and Gaia16ajq. We consider possible scenarios to explain the observed outbursts. We exclude that the transient event could be caused by a microlensing event, variable dust absorption or a tidal encounter between a neutron star and a stellar mass black hole in the accretion disk. We consider variability in the accretion flow in the inner part of the disk, or a tidal disruption event of a star 1M\geq 1 M_{\odot} by a rapidly spinning supermassive black hole as the most plausible scenarios. We note that the similarity between the light curves of the three Gaia transients may be a function of the Gaia alerts selection criteria.

Keywords

Cite

@article{arxiv.2001.07446,
  title  = {Extreme variability in an active galactic nucleus: Gaia16aax},
  author = {G. Cannizzaro and M. Fraser and P. G. Jonker and J. E. Pringle and S. Mattila and P. C. Hewett and T. Wevers and E. Kankare and Z. Kostrzewa-Rutkowska and Ł. Wyrzykowski and F. Onori and J. Harmanen and K. E. S. Ford and B. McKernan and C. J. Nixon},
  journal= {arXiv preprint arXiv:2001.07446},
  year   = {2020}
}

Comments

21 pages, 17 figure - accepted for publication in MNRAS main journal

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