Limits on the Gunn-Peterson Effect at z = 5
Abstract
We report new limits on the Gunn-Peterson effect at a redshift near 5 using spectroscopic observations of the z = 5 Sloan Digital Sky Survey quasar, J033829.31+002156.3, made with the LRIS and HIRES spectrographs on the Keck telescopes. Lower resolution spectrophotometrically calibrated observations made with LRIS over the wavelength region 4500-9600 angstroms were used to obtain a continuum shape and to flux calibrate much higher resolution (R = 36,000) observations made with HIRES. The LRIS data show an Oke D_A index of 0.75. Portions of the HIRES spectrum return to near the extrapolated continuum level. Including both statistical and systematic errors we place an upper limit of tau = 0.1 on the regions of minimum opacity. We argue that, even if this opacity arises in underdense regions of the intergalactic gas, we require a high value of the metagalactic ionizing flux at these redshifts ( at ) to produce a solution which is consistent with even minimum nucleosynthesis estimates of the baryon density. We also report the presence of a Mg II absorption system of extremely high equivalent width ( \AA) at z=2.304.
Cite
@article{arxiv.astro-ph/9908321,
title = {Limits on the Gunn-Peterson Effect at z = 5},
author = {Antoinette Songaila and Esther M. Hu and Lennox L. Cowie and Richard G. McMahon},
journal= {arXiv preprint arXiv:astro-ph/9908321},
year = {2009}
}
Comments
15 pages including 2 figures. Also available at http://www.ifa.hawaii.edu/~acowie/gp_5.html To be published in Astrophysical Journal Letters