A Survey of Metal Lines at High-redshift (II) : SDSS Absorption Line Studies - OVI line density, space density and gas metallicity at z_abs ~ 3.0
S. Frank (The Ohio State University), S. Mathur (The Ohio State, University), M. Pieri (The Ohio State University), D.G. York (University of, Chicago)

TL;DR
This study analyzes SDSS quasar spectra to measure the density, metallicity, and contribution of OVI absorbers at high redshift, providing new lower limits and correction methods for these measurements.
Contribution
It presents the first secure lower limits for OVI absorber density at z~3, accounting for blending and detection incompleteness using extensive Monte Carlo simulations.
Findings
Derived redshift number densities for OVI absorbers at z~3.
Estimated the lower limit of OVI contribution to mass density.
Measured the mean metallicity of the gas at high redshift.
Abstract
We have analysed a large data set of OVI absorber candidates found in the spectra of 3702 SDSS quasars, focusing on a subsample of 387 AGN sightlines with an average S/N>5.0, allowing for detection of absorbers above rest-frame equivalents widths W_r>0.19 A for the OVI 1032 A component. Accounting for random interlopers mimicking an OVI doublet, we derive for the first time a secure lower limit for the redshift number density for redshifts z_abs>2.8. With extensive Monte Carlo simulations we quantify the losses of absorbers due to blending with the ubiquitous Lyman forest lines, and estimate the success rate of retrieving each individual candidate as a function of its redshift, the emission redshift of the quasar, the strength of the absorber and the measured S/N of the spectrum by modelling typical Ly forest spectra. These correction factors allow us to derive the…
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