English

Understanding extreme quasar optical variability with CRTS: II. Changing-state quasars

Astrophysics of Galaxies 2020-01-08 v1

Abstract

We present the results of a systematic search for quasars in the Catalina Real-time Transient Survey exhibiting both strong photometric and spectroscopic variability over a decadal baseline. We identify 73 sources with specific patterns of optical and mid-IR photometric behavior and a defined spectroscopic change. These "Changing-State" quasars (CSQs) form a higher luminosity sample to complement existing sets of "Changing-Look" AGN and quasars in the literature. The CSQs (by selection) exhibit larger photometric variability than the CLQs. The spectroscopic variability is marginally stronger in the CSQs than CLQs as defined by the change in Hβ\beta/[OIII] ratio. We find 36 sources with declining Hβ\beta flux, 37 sources with increasing Hβ\beta flux and discover seven sources with z>0.8z > 0.8, further extending the redshift arm. Our CSQ sample compares to the literature CLQ objects in similar distributions of Hβ\beta flux ratios and differential Eddington ratios between high (bright) and low (dim) states. Taken as a whole, we find that this population of extreme varying quasars is associated with changes in the Eddington ratio and the timescales imply cooling/heating fronts propagating through the disk.

Keywords

Cite

@article{arxiv.1905.02262,
  title  = {Understanding extreme quasar optical variability with CRTS: II. Changing-state quasars},
  author = {Matthew J. Graham and Nicholas P. Ross and Daniel Stern and rew J. Drake and Barry McKernan and K. E. Saavik Ford and S. G. Djorgovski and Ashish Mahabal and Eilat Glikman and Steve Larson and Eric Christensen},
  journal= {arXiv preprint arXiv:1905.02262},
  year   = {2020}
}

Comments

43 pages, 22 figures, submitted