English

X-ray Detected AGN in SDSS Dwarf Galaxies

Astrophysics of Galaxies 2020-01-29 v3

Abstract

In this work we present a robust quantification of X-ray selected AGN in local (z0.25z \leq 0.25) dwarf galaxies (M3×109MM_\mathrm{*} \leq 3 \times 10^9 \mathrm{M_\odot}). We define a parent sample of 4,331 dwarf galaxies found within the footprint of both the MPA-JHU galaxy catalogue (based on SDSS DR8) and 3XMM DR7, performed a careful review of the data to remove misidentifications and produced a sample of 61 dwarf galaxies that exhibit nuclear X-ray activity indicative of an AGN. We examine the optical emission line ratios of our X-ray selected sample and find that optical AGN diagnostics fail to identify 85% of the sources. We then calculated the growth rates of the black holes powering our AGN in terms of their specific accretion rates (LX/M\propto L_\mathrm{X}/M_\mathrm{*}, an approximate tracer of the Eddington ratio). Within our observed sample, we found a wide range of specific accretion rates. After correcting the observed sample for the varying sensitivity of 3XMM, we found further evidence for a wide range of X-ray luminosities and specific accretion rates, described by a power law. Using this corrected AGN sample we also define an AGN fraction describing their relative incidence within the parent sample. We found the AGN fraction increases with host galaxy mass (up to \approx 6%) for galaxies with X-ray luminosities between 1039erg/s10^{39} \mathrm{erg/s} and 1042erg/s10^{42} \mathrm{erg/s}, and by extrapolating the power law to higher luminosities, we found evidence to suggest the fraction of luminous AGN (LX1042.4erg/sL_\mathrm{X} \geq 10^{42.4} \mathrm{erg/s}) is constant out to z0.7z \approx 0.7.

Keywords

Cite

@article{arxiv.2001.03135,
  title  = {X-ray Detected AGN in SDSS Dwarf Galaxies},
  author = {Keir L Birchall and M G Watson and J Aird},
  journal= {arXiv preprint arXiv:2001.03135},
  year   = {2020}
}

Comments

19 pages, 12 figures, 1 table. Accepted for publication in MNRAS

R2 v1 2026-06-23T13:07:18.496Z