High-precision Photometric Redshifts from Spitzer/IRAC: Extreme [3.6]-[4.5] Colors Identify Galaxies in the Redshift Range z~6.6-6.9
Renske Smit, Rychard J. Bouwens, Marijn Franx, Pascal A. Oesch,, Matthew L. N. Ashby, S. P. Willner, Ivo Labbe, Benne Holwerda, Giovanni G., Fazio, J.-S. Huang

TL;DR
This paper introduces a method using extremely blue IRAC [3.6]-[4.5] colors to accurately identify galaxies in the redshift range z~6.6-6.9, improving redshift precision for early universe studies.
Contribution
It presents a novel color-based selection technique leveraging nebular emission lines to pinpoint high-redshift galaxies with high accuracy.
Findings
Identified 20 probable z~6.6-6.9 galaxies using IRAC colors.
Estimated a typical [O III]+Hb equivalent width of 1085A for the sample.
Selected ~50% of the strongest line emitters at z~6.8.
Abstract
One of the most challenging aspects of studying galaxies in the z>~7 universe is the infrequent confirmation of their redshifts through spectroscopy, a phenomenon thought to occur from the increasing opacity of the intergalactic medium to Lya photons at z>6.5. The resulting redshift uncertainties inhibit the efficient search for [C II] in z~7 galaxies with sub-mm instruments such as ALMA, given their limited scan speed for faint lines. One means by which to improve the precision of the inferred redshifts is to exploit the potential impact of strong nebular emission lines on the colors of z~4-8 galaxies as observed by Spitzer/IRAC. At z~6.8, galaxies exhibit IRAC colors as blue as [3.6]-[4.5] ~-1, likely due to the contribution of [O III]+Hb to the 3.6 mum flux combined with the absence of line contamination in the 4.5 mum band. In this paper we explore the use of extremely blue…
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