PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 12, 2026The Astronomical Journal1 citationsOpen Access

The Eddington Ratio Distribution of Narrow-line Active Galactic Nuclei

View Full Paper
MBMichael R. BlantonASArjun SureshKWKyle B. Westfall

Key Points

  • This research aims to measure the Eddington ratio distribution of local optical narrow-line AGN and its correlation with host galaxy properties.
  • Analyzed data from the Mapping Nearby Galaxies at APO (MaNGA) sample of the Sloan Digital Sky Survey IV Data Release 17.
  • Applied line ratio diagnostic techniques to identify AGN and determine their luminosities.
  • Calculated thresholds for luminosities to account for selection effects in AGN identification.
  • F AGN is constant or increasing with stellar mass for star-forming galaxies, decreasing strongly for quiescent galaxies.
  • Occurrence rate of AGN increases with specific star formation rate (sSFR) for stellar masses >10.25.
  • At low statistical significance, F AGN peaks at intermediate sSFR for lower mass bins (9.25 < log10 M* < 10.25).

Abstract

Abstract We measure the Eddington ratio distribution of local optical narrow-line active galactic nuclei (AGN) as a function of host galaxy properties, as a potential test of galaxy formation theories of AGN feedback. We extract central emission-line fluxes using data from the Mapping Nearby Galaxies at APO (MaNGA) sample of the Sloan Digital Sky Survey IV Data Release 17. Using the line ratio diagnostic techniques of X. Ji & R. Yan, we identify AGN galaxies and determine their H β and O iii line luminosities. For all galaxies not identified as AGN, we determine the threshold line luminosity they would have needed to be identified as AGN. These luminosity thresholds allow us to account for selection effects that otherwise would lead to strongly biased results. From the H β luminosities and luminosity detection thresholds, accounting for selection effects, we measure the luminosity and Eddington ratio distributions of Seyferts as a function of specific star formation rate (sSFR) and stellar mass. Defining F AGN as the occurrence rate of AGN above a fixed Eddington ratio of 10 −3 , we find that F AGN is constant or increasing with stellar mass for star-forming galaxies and declines strongly with stellar mass for quiescent galaxies. At stellar masses log 10 M * > 10.25 , the occurrence rate increases monotonically with sSFR. At low statistical significance, in our lowest mass bins 9.25 log 10 M * 10.25 , F AGN peaks at intermediate sSFR. These patterns reveal a complicated dependence of AGN activity on galaxy properties for theoretical models to explain.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Blanton et al. (2026) studied this question.

synapsesocial.com/papers/6a02c2b9ce8c8c81e9640344https://doi.org/10.3847/1538-3881/ae5a1e
Ask AI
Helpful
Bookmark
Share
View Full Paper