The UV--mid-IR Spectral Energy Distribution of a z=1.7 Quasar Host Galaxy
arXiv:0904.1708 · doi:10.1088/0004-637X/702/1/472
Abstract
We have measured the spectral energy distribution (SED) of the host galaxy of the z_s=1.7 gravitationally lensed quasar SDSS J1004+4112 from 0.44-8.0 micron (0.16-3.0 micron in the rest frame). The large angular extent of the lensed images and their separation from the centralgalaxy of this cluster lens allows the images to be resolved even with the Spitzer Space Telescope. Based on the SED, the host galaxy is a mixture of relatively old and intermediate age stars with an inferred stellar mass of log(M_stars/M_sun)=11.09+/-0.28 and a star formation rate of log(Mdot/1 M_sun per yr)=1.21+/-0.26. Given the estimated black hole mass of M_BH ~10^8.6 M_sun from locally-calibrated correlations of black hole masses with line widths and luminosities, the black hole represents a fraction log(M_BH/M_stars) = -2.49+/-0.28 of the stellar mass and it is radiating at 0.24+/-0.05 of the Eddington limit. The ratio of the host stellar mass to the black hole mass is only marginally consistent with the locally observed ratio.
v2, 19 pages, 5 figures, added image depths to Table 1, added UV SFR estimates, corrected misquoted X-ray luminosity
References in corpus (8)
- A Cosmological Framework for the Co-Evolution of Quasars, Supermassive Black Holes, and Elliptical Galaxies: I. Galaxy Mergers & Quasar Activity
- A unified model for AGN feedback in cosmological simulations of structure formation
- Direct cosmological simulations of the growth of black holes and galaxies
- The Rewards of Patience: An 822 Day Time Delay in the Gravitational Lens SDSS J1004+4112
- Estimating the total infrared luminosity of galaxies up to z~2 from mid- and far-infrared observations
- Low Resolution Spectral Templates For Galaxies From 0.2 -- 10 microns
- An Investigation into the Effects of Luminosity on the Mid-Infrared Spectral Energy Distributions of Radio-Quiet Quasars
- Strange magnification pattern in the large separation lens SDSS J1004+4112 from optical to X-rays