An Apparent Redshift Dependence of Quasar Continuum: Implication for Cosmic Dust Extinction?
Abstract
We investigate the luminosity and redshift dependence of the quasar continuum by means of composite spectrum using a large non-BAL radio-quiet quasar sample drawn from the Sloan Digital Sky Survey. Quasar continuum slopes in the UV-Opt band are measured at two different wavelength ranges, i.e., () and () derived from power law fitting. Generally, the UV spectra slope becomes harder (higher ) towards higher bolometric luminosity. On the other hand, when quasars are further grouped into luminosity bins, we find both and show significant anti-correlation with redshift (i.e., quasar continuum becomes redder towards higher redshift). We suggest that the cosmic dust extinction is very likely the cause of this observed relation. We build a simple cosmic dust extinction model to quantify the observed reddening tendency and find an effective dust density at . The other possibilities that could produce such a reddening effect have also been discussed.
Cite
@article{arxiv.1503.02235,
title = {An Apparent Redshift Dependence of Quasar Continuum: Implication for Cosmic Dust Extinction?},
author = {Xiaoyi Xie and Shiyin Shen and Zhengyi Shao and Jun Yin},
journal= {arXiv preprint arXiv:1503.02235},
year = {2015}
}
Comments
6 pages, 5 figures; published in ApJL