The Bright End of the z~9 and z~10 UV Luminosity Functions using all five CANDELS Fields
R. J. Bouwens, P. A. Oesch, I. Labbe, G.D. Illingworth, G.G. Fazio, D., Coe, B. Holwerda, R. Smit, M. Stefanon, P.G. van Dokkum, M. Trenti, M.L.N., Ashby, J.-S. Huang, L. Spitler, C. Straatman, L. Bradley, D. Magee

TL;DR
This study identifies and characterizes bright z~9-10 galaxies using new HST observations, constraining the UV luminosity functions at these redshifts and supporting models of accelerated galaxy evolution after z~8.
Contribution
It introduces a new HST program targeting z~9-10 galaxies with 1.05-micron observations, improving the robustness of high-redshift galaxy samples and refining luminosity function estimates.
Findings
Identified 15 credible z~9-10 galaxies in the CANDELS fields.
Found volume densities of bright z~9 and z~10 galaxies lower than at z~8.
Results support the accelerated evolution scenario at z>8.
Abstract
The deep, wide-area (~800-900 arcmin**2) near-infrared/WFC3/IR + Spitzer/IRAC observations over the CANDELS fields have been a remarkable resource for constraining the bright end of high redshift UV luminosity functions (LFs). However, the lack of HST 1.05-micron observations over the CANDELS fields has made it difficult to identify z~9-10 sources robustly, since such data are needed to confirm the presence of an abrupt Lyman break at 1.2 microns. We report here on the successful identification of many such z~9-10 sources from a new HST program (z9-CANDELS) that targets the highest-probability z~9-10 galaxy candidates with observations at 1.05 microns, to search for a robust Lyman-break at 1.2 microns. The potential z~9-10 candidates are preselected from the full HST, Spitzer/IRAC S-CANDELS observations, and the deepest-available ground-based optical+near-infrared observations. We…
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