Surface Brightness Profile of Lyman-$\alpha$ Halos out to 320 kpc in HETDEX
Abstract
We present the median-stacked Lyman- surface brightness profile of 968 spectroscopically selected Lyman- emitting galaxies (LAEs) at redshifts in the early data of the Hobby-Eberly Telescope Dark Energy Experiment (HETDEX). The selected LAEs are high-confidence Lyman- detections with large signal-to-noise ratios observed with good seeing conditions (point-spread-function full-width-at-half-maximum ), excluding active galactic nuclei (AGN). The Lyman- luminosities of the LAEs are . We detect faint emission in the median-stacked radial profiles at the level of from the surrounding Lyman- halos out to kpc (physical). The shape of the median-stacked radial profile is consistent at with that of much fainter LAEs at observed with the Multi Unit Spectroscopic Explorer (MUSE), indicating that the median-stacked Lyman- profiles have similar shapes at redshifts and across a factor of in Lyman- luminosity. While we agree with the results from the MUSE sample at , we extend the profile over a factor of two in radius. At , our profile is flatter than the MUSE model. The measured profile agrees at most radii with that of galaxies in the Byrohl et al. (2021) cosmological radiative transfer simulation at . This suggests that the surface brightness of a Lyman- halo at kpc is dominated by resonant scattering of Lyman- photons from star-forming regions in the central galaxy, whereas at kpc it is dominated by photons from galaxies in surrounding dark matter halos.
Keywords
Cite
@article{arxiv.2203.04826,
title = {Surface Brightness Profile of Lyman-$\alpha$ Halos out to 320 kpc in HETDEX},
author = {Maja Lujan Niemeyer and Eiichiro Komatsu and Chris Byrohl and Dustin Davis and Maximilian Fabricius and Karl Gebhardt and Gary J. Hill and Lutz Wisotzki and William P. Bowman and Robin Ciardullo and Daniel J. Farrow and Steven L. Finkelstein and Eric Gawiser and Caryl Gronwall and Donghui Jeong and Martin Landriau and Chenxu Liu and Erin Mentuch Cooper and Masami Ouchi and Donald P. Schneider and Gregory R. Zeimann},
journal= {arXiv preprint arXiv:2203.04826},
year = {2022}
}
Comments
15 pages, 7 figures, accepted by The Astrophysical Journal