paper

Resolving Clumpy vs. Extended Ly- In Strongly Lensed, High-Redshift Ly- Emitters

arXiv:2312.02336

Abstract

We present six strongly gravitationally lensed Ly- Emitters (LAEs) at with HST narrowband imaging isolating Ly-. Through complex radiative transfer Ly- encodes information about the spatial distribution and kinematics of the neutral hydrogen upon which it scatters. We investigate the galaxy properties and Ly- morphologies of our sample. Many previous studies of high-redshift LAEs have been limited in Ly- spatial resolution. In this work we take advantage of high-resolution Ly- imaging boosted by lensing magnification, allowing us to probe sub-galactic scales that are otherwise inaccessible at these redshifts. We use broadband imaging from HST (rest-frame UV) and Spitzer (rest-frame optical) in SED fitting; providing estimates on the stellar masses (), stellar population ages ( Myr), and amounts of dust (, statistically consistent with zero). We employ non-parametric star-formation histories to probe the young stellar-populations which create Ly-. We also examine the offsets between the Ly- and stellar continuum, finding small upper limits of offsets () consistent with studies of low-redshift LAEs; indicating our galaxies are not interacting or merging. Finally, we find a bimodality in our sample's Ly- morphologies: clumpy and extended. We find a suggestive trend: our LAEs with clumpy Ly- are generally younger than the LAEs with extended Ly-, suggesting a possible correlation with age.

17 pages (2 for references), 5 figures, 6 tables

Resolving Clumpy vs. Extended Ly-$α$ In Strongly Lensed, High-Redshift Ly-$α$ Emitters · wovepaper