UVUDF: UV Luminosity Functions at the cosmic high-noon
Abstract
We present the rest-1500\AA\ UV luminosity functions (LF) for star-forming galaxies during the cosmic \textit{high noon} -- the peak of cosmic star formation rate at . We use deep NUV imaging data obtained as part of the \textit{Hubble} Ultra-Violet Ultra Deep Field (UVUDF) program, along with existing deep optical and NIR coverage on the HUDF. We select F225W, F275W and F336W dropout samples using the Lyman break technique, along with samples in the corresponding redshift ranges selected using photometric redshifts and measure the rest-frame UV LF at respectively, using the modified maximum likelihood estimator. We perform simulations to quantify the survey and sample incompleteness for the UVUDF samples to correct the effective volume calculations for the LF. We select galaxies down to and fit a faint-end slope of at , , and , respectively. We compare the star formation properties of galaxies from these UV observations with results from H\alpha\ and UVIR observations. We find a lack of high SFR sources in the UV LF compared to the H\alpha\ and UVIR, likely due to dusty SFGs not being properly accounted for by the generic relation used to correct for dust. We compute a volume-averaged UV-to-H\alpha\ ratio by \textit{abundance matching} the rest-frame UV LF and H\alpha\ LF. We find an increasing UV-to-H\alpha\ ratio towards low mass galaxies ( M). We conclude that this could be due to a larger contribution from starbursting galaxies compared to the high-mass end.
Keywords
Cite
@article{arxiv.1702.06953,
title = {UVUDF: UV Luminosity Functions at the cosmic high-noon},
author = {Vihang Mehta and Claudia Scarlata and Marc Rafelski and Timothy Gburek and Harry I. Teplitz and Anahita Alavi and Michael Boylan-Kolchin and Steven Finkelstein and Jonathan P. Gardner and Norman Grogin and Anton Koekemoer and Peter Kurczynski and Brian Siana and Alex Codoreanu and Duilia F. de Mello and Kyoung-Soo Lee and Emmaris Soto},
journal= {arXiv preprint arXiv:1702.06953},
year = {2017}
}
Comments
19 pages, 10 figures, accepted to ApJ