On the detectability of visible-wavelength line emission from the local circumgalactic and intergalactic medium
Abstract
We describe a new approach to studying the intergalactic and circumgalactic medium in the local Universe: direct detection through narrow-band imaging of ultra-low surface brightness visible-wavelength line emission. We use the hydrodynamical cosmological simulation EAGLE to investigate the expected brightness of this emission at low redshift ( 0.2). H emission in extended halos (analogous to the extended Ly halos/blobs detected around galaxies at high redshifts) has a surface brightness of photons cm sr s out to 100 kpc. Mock observations show that the Dragonfly Telephoto Array, equipped with state-of-the-art narrow-band filters, could directly image these structures in exposure times of 10 hours. H fluorescence emission from this gas can be used to place strong constraints on the local ultra-violet background, and on gas flows around galaxies. Detecting H emission from the diffuse intergalactic medium (the "cosmic web") is beyond current capabilities, but would be possible with a hypothetical 1000-lens Dragonfly array.
Keywords
Cite
@article{arxiv.1904.07874,
title = {On the detectability of visible-wavelength line emission from the local circumgalactic and intergalactic medium},
author = {Deborah Lokhorst and Roberto Abraham and Pieter van Dokkum and Nastasha Wijers and Joop Schaye},
journal= {arXiv preprint arXiv:1904.07874},
year = {2019}
}
Comments
18 pages, 12 figures. Accepted for publication in ApJ