English

The CLASS Quasar Catalog: Coronal Line Activity in Type 1 SDSS Quasars

Astrophysics of Galaxies 2025-01-29 v1

Abstract

We conduct the first systematic survey of a total of eleven optical coronal lines in the spectra of a large sample of low redshift (z < 0.8) Type 1 quasars observed by the Sloan Digital Sky Survey (SDSS). We find that strong coronal line emission is rare in SDSS even in Type 1 quasars; only 885 out of 19,508 (4.5%) galaxies show at least one coronal line, with higher ionization potential lines (>100>100eV) being even rarer. The [Ne V] λ\lambda3426 line, which constitutes the majority of detections, is strongly correlated with the bolometric luminosity. These findings suggest that the optical coronal lines are significantly suppressed in the majority of local AGNs, possibly as a result of the presence of dust in the emitting regions. We find that the incidence of ionized outflows is significantly higher in coronal line emitters compared with non-coronal line emitters, possibly suggesting that dust destruction in outflows enhances coronal line emission in AGNs. Many coronal lines show line profiles that are broader than those of narrow lines, and are blue-shifted relative the lower ionization potential lines, suggesting outflows in the highly ionized gas. Given the limited number of detections, we do not find any statistically significant trends of detection statistics, or line ratios with black hole mass, Eddington ratio, or AGN bolometric luminosity. The catalog is publicly available and can provide a useful database of the coronal line properties of low redshift quasars that can be compared to the growing number of high-z AGNs discovered by JWST.

Keywords

Cite

@article{arxiv.2501.17067,
  title  = {The CLASS Quasar Catalog: Coronal Line Activity in Type 1 SDSS Quasars},
  author = {Sara Doan and Shobita Satyapal and Michael Reefe and Remington O. Sexton and William Matzko and Jeffrey D. McKaig and Nathan J. Secrest and Jenna M. Cann and Ari Laor and Gabriela Canalizo},
  journal= {arXiv preprint arXiv:2501.17067},
  year   = {2025}
}

Comments

Accepted for publication in ApJS

R2 v1 2026-06-28T21:22:20.274Z