A Connection between Obscuration and Star Formation in Luminous Quasars
Abstract
We present a measurement of the star formation properties of a uniform sample of mid-IR selected, unobscured and obscured quasars (QSO1s and QSO2s) in the Bo\"otes survey region. We use an spectral energy distribution (SED) analysis for photometric data spanning optical to far-IR wavelengths to decompose AGN and host galaxy components. We find that when compared to a matched sample of QSO1s, the QSO2s have higher far-IR detection fractions, far-IR fluxes and infrared star formation luminosities () by a factor of . Correspondingly, we show that the AGN obscured fraction rises from 0.3 to 0.7 between . We also find evidence associating the absorption in the X-ray emission with the presence of far-IR emitting dust. Overall, these results are consistent with galaxy evolution models in which quasar obscurations can be associated with a dust-enshrouded starburst galaxies.
Cite
@article{arxiv.1501.04959,
title = {A Connection between Obscuration and Star Formation in Luminous Quasars},
author = {Chien-Ting J. Chen and Ryan C. Hickox and Stacey Alberts and Chris M. Harrison and David M. Alexander and Roberto Assef and Michael J. I. Brown and Agnese Del Moro and William R. Forman and Varoujan Gorjian and Andrew D. Goulding and Kevin N. Hainline and Christine Jones and Christopher S. Kochanek and Stephen S. Murray and Alexandra Pope and Emmanouel Rovilos and Daniel Stern},
journal= {arXiv preprint arXiv:1501.04959},
year = {2015}
}
Comments
15 pages, 8 figures, accepted for publication in ApJ