Ultraviolet Fe II Emission in Fainter Quasars: Luminosity Dependences, and the Influence of Environments
Roger G. Clowes, Lutz Haberzettl, Srinivasan Raghunathan, Gerard M., Williger, Sophia M. Mitchell, Ilona K. Soechting, Matthew J. Graham, Luis, E. Campusano

TL;DR
This study examines ultraviolet Fe II emission in faint quasars, revealing its dependence on luminosity, environment, and black hole growth, with stronger emission linked to lower luminosity, specific environments, and smaller black holes.
Contribution
It provides new insights into how UV Fe II emission varies with quasar luminosity, environment, and black hole properties, highlighting the role of Lyα fluorescence and quasar age.
Findings
Fe II emission strengthens as luminosity decreases.
Enhanced Fe II emission in quasars within Large Quasar Groups.
Stronger Fe II emission correlates with smaller black hole mass.
Abstract
We investigate the strength of ultraviolet Fe II emission in fainter quasars compared with brighter quasars for 1.0 <= z <= 1.8, using the SDSS (Sloan Digital Sky Survey) DR7QSO catalogue and spectra of Schneider et al., and the SFQS (SDSS Faint Quasar Survey) catalogue and spectra of Jiang et al. We quantify the strength of the UV Fe II emission using the W2400 equivalent width of Weymann et al., which is defined between two rest-frame continuum windows at 2240-2255 and 2665-2695 Ang. The main results are the following. (1) We find that for W2400 >~ 25 Ang. there is a universal (i.e. for quasars in general) strengthening of W2400 with decreasing intrinsic luminosity, L3000. (2) In conjunction with previous work by Clowes et al., we find that there is a further, differential, strengthening of W2400 with decreasing L3000 for those quasars that are members of Large Quasar Groups (LQGs).…
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