pith. machine review for the scientific record. sign in

arxiv: 1708.00453 · v1 · submitted 2017-08-01 · 🌌 astro-ph.GA

Recognition: unknown

Spatially Resolved Patchy Lyman-α Emission Within the Central Kiloparsec of a Strongly Lensed Quasar Host Galaxy at z = 2.8

(2) Michigan, (3) ANU, (4) KICP, 5), (5) UChicago, (6) NASA Goddard, 7), (7) Stromlo Fellow, 8), (8) Hubble Fellow, (9) University of Oslo), Ayan Acharyya (3), Fuyan Bian (3, Hakon Dahle (9), Jane R. Rigby (6), Jessie Runnoe (2), Keren Sharon (2), Lisa Kewley (3), Matthew B. Bayliss (1), Michael D. Gladders (4, Michael Florian (5), Rachel Paterno-Mahler (2) ((1) MIT, Rongmon Bordoloi (1, Traci Johnson (2)

Authors on Pith no claims yet
classification 🌌 astro-ph.GA
keywords galaxyhostalphalyman-quasarcentralemissionextended
0
0 comments X
read the original abstract

We report the detection of extended Lyman-$\alpha$ emission from the host galaxy of SDSS~J2222+2745, a strongly lensed quasar at $z = 2.8$. Spectroscopic follow-up clearly reveals extended Lyman-$\alpha$ in emission between two images of the central active galactic nucleus (AGN). We reconstruct the lensed quasar host galaxy in the source plane by applying a strong lens model to HST imaging, and resolve spatial scales as small as $\sim$200 parsecs. In the source plane we recover the host galaxy morphology to within a few hundred parsecs of the central AGN, and map the extended Lyman-$\alpha$ emission to its physical origin on one side of the host galaxy at radii $\sim$0.5-2 kpc from the central AGN. There are clear morphological differences between the Lyman-$\alpha$ and rest-frame ultraviolet stellar continuum emission from the quasar host galaxy. Furthermore, the relative velocity profiles of quasar Lyman-$\alpha$, host galaxy Lyman-$\alpha$, and metal lines in outflowing gas reveal differences in the absorbing material affecting the AGN and host galaxy. These data indicate the presence of patchy local intervening gas in front of the central quasar and its host galaxy. This interpretation is consistent with the central luminous quasar being obscured across a substantial fraction of its surrounding solid angle, resulting in strong anisotropy in the exposure of the host galaxy to ionizing radiation from the AGN. This work demonstrates the power of strong lensing-assisted studies to probe spatial scales that are currently inaccessible by other means.

This paper has not been read by Pith yet.

discussion (0)

Sign in with ORCID, Apple, or X to comment. Anyone can read and Pith papers without signing in.

Forward citations

Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. COOL-LAMPS IX: A Rare Duo of Quasars Each Lensed by a Single Massive Galaxy Cluster

    astro-ph.GA 2026-05 accept novelty 4.0

    A single galaxy cluster lenses two quasars (one Type I at z=1.524, one dust-obscured Type II at z=1.939) into four images each, yielding a projected mass of ~3.3e14 solar masses within 500 kpc and time delays of hundr...