4.7 Article

Detailed Accretion History of the Supermassive Black Hole in NGC 5972 over the Past ≳104 yr through the Extended Emission-line Region

Journal

ASTROPHYSICAL JOURNAL
Volume 936, Issue 1, Pages -

Publisher

IOP Publishing Ltd
DOI: 10.3847/1538-4357/ac854e

Keywords

-

Funding

  1. FONDECYT [3220751, 3200802, 1190818, 1200495]
  2. ANID grants CATA-Basal [AFB- 170002, FB210003, ACE210002]
  3. Millennium Nucleus [NCN19_058]
  4. Millennium Science Initiative Program [ICN12_009]
  5. Chandra grants [GO8-19096X, GO5-16101X, GO7-18112X, GO8-19099X]
  6. Hubble grant [HST-GO-15350.001-A]
  7. DLR grants [FKZ 50 OR 2203]

Ask authors/readers for more resources

We present integral field spectroscopic observations of NGC 5972, a nearby galaxy with an active galactic nucleus and an extended emission-line region. The kinematic analysis reveals multiple components and suggests a major past interaction event. By fitting photoionization models, we estimate the required bolometric luminosity and find that NGC 5972 is a fading quasar.
We present integral field spectroscopic observations of NGC 5972 obtained with the Multi-Unit Spectroscopic Explorer at the Very Large Telescope. NGC 5972 is a nearby galaxy containing both an active galactic nucleus (AGN) and an extended emission-line region (EELR) reaching out to similar to 17 kpc from the nucleus. We analyze the physical conditions of the EELR using spatially resolved spectra, focusing on the radial dependence of ionization state together with the light-travel time distance to probe the variability of the AGN on greater than or similar to 10(4) yr timescales. The kinematic analysis suggests multiple components: (a) a faint component following the rotation of the large-scale disk, (b) a component associated with the EELR suggestive of extraplanar gas connected to tidal tails, and (c) a kinematically decoupled nuclear disk. Both the kinematics and the observed tidal tails suggest a major past interaction event. Emission-line diagnostics along the EELR arms typically evidence Seyfert-like emission, implying that the EELR was primarily ionized by the AGN. We generate a set of photoionization models and fit these to different regions along the EELR. This allows us to estimate the bolometric luminosity required at different radii to excite the gas to the observed state. Our results suggest that NGC 5972 is a fading quasar, showing a steady gradual decrease in intrinsic AGN luminosity, and hence the accretion rate onto the SMBH, by a factor similar to 100 over the past 5 x 10(4) yr.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.7
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available