What Makes Ly$\alpha$ Nebulae Glow? Mapping the Polarization of LABd05
Abstract
"Ly nebulae" are giant (100 kpc), glowing gas clouds in the distant universe. The origin of their extended Ly emission remains a mystery. Some models posit that Ly emission is produced when the cloud is photoionized by UV emission from embedded or nearby sources, while others suggest that the Ly photons originate from an embedded galaxy or AGN and are then resonantly scattered by the cloud. At least in the latter scenario, the observed Ly emission will be polarized. To test these possibilities, we are conducting imaging polarimetric observations of seven Ly nebulae. Here we present our results for LABd05, a cloud at = 2.656 with an obscured, embedded AGN to the northeast of the peak of Ly emission. We detect significant polarization. The highest polarization fractions are 10-20% at 20-40 kpc southeast of the Ly peak, away from the AGN. The lowest , including upper-limits, are 5% and lie between the Ly peak and AGN. In other words, the polarization map is lopsided, with increasing from the Ly peak to the southeast. The measured polarization angles are oriented northeast, roughly perpendicular to the gradient. This unique polarization pattern suggests that 1) the spatially-offset AGN is photoionizing nearby gas and 2) escaping Ly photons are scattered by the nebula at larger radii and into our sightline, producing tangentially-oriented, radially-increasing polarization away from the photoionized region. Finally we conclude that the interplay between the gas density and ionization profiles produces the observed central peak in the Ly emission. This also implies that the structure of LABd05 is more complex than assumed by current theoretical spherical or cylindrical models.
Keywords
Cite
@article{arxiv.2003.13915,
title = {What Makes Ly$\alpha$ Nebulae Glow? Mapping the Polarization of LABd05},
author = {Eunchong Kim and Yujin Yang and Ann Zabludoff and Paul Smith and Buell Jannuzi and Myung Gyoon Lee and Narae Hwang and Byeong-Gon Park},
journal= {arXiv preprint arXiv:2003.13915},
year = {2020}
}
Comments
11 pages, 8 figures