A z = 3.045 Lyα emitting halo hosting a QSO and a possible candidate for AGN-triggered star formation
Creators
Abstract
In this third paper in a series on the nature of extended, asymmetric Lyα emitters at z ∼ 3 we report the discovery, in an ultra-deep, blind, spectroscopic long-slit survey, of a Lyα emitting halo around a QSO at redshift 3.045. The QSO is a previously known, obscured active galactic nucleus (AGN). The Lyα emitting halo appears extended along the direction of the slit and exhibits two faint patches separated by 17 proper kpc in projection from the QSO. Comparison of the two-dimensional spectrum with archival Hubble Space Telescope ACS images shows that these patches coincide spatially with emission from a peculiar, dumbbell-shaped, faint galaxy. The assumptions that the Lyα emission patches are originating in the galaxy and that the galaxy is physically related to the QSO are at variance with photometric estimates of the galaxy redshift. We show, however, that a population of very young stars at the redshift of the QSO may fit the existing rest-frame broad-band UV photometry of the galaxy. If this scenario is correct, then the symmetry of the galaxy in continuum and Lyα emission, the extension of the QSO's Lyα emission in its direction, and the likely presence of a young stellar population in close proximity to a (short-lived) AGN suggest that this may be an example of AGN feedback triggering external star formation in high-redshift galaxies.
Additional Information
© 2013 The Authors. Published by Oxford University Press on behalf of the Royal Astronomical Society. Accepted 2013 January 24. Received 2013 January 18; in original form 2012 December 17. First published online: February 18, 2013. This paper is based on data gathered with the 6.5 m Magellan Telescopes located at Las Campanas Observatory, Chile. We acknowledge helpful discussions with Carolin Cardamone, Andrea Grazian and Francois Schweizer. We thank the staff of the Las Campanas Observatory for their help with the observations. MR is grateful to the IoA in Cambridge and to the Raymond and Beverley Sackler Distinguished Visitor programme for hospitality and support in summer 2011 and 2012, when some of this work was done, and to the National Science Foundation for grant AST-1108815. GB has been supported by the Kavli Foundation. JRG acknowledges a Millikan Fellowship at Caltech. We acknowledge the use of the extinction calculator by Doug Welch.Attached Files
Published - MNRAS-2013-Rauch-L68-72.pdf
Files
MNRAS-2013-Rauch-L68-72.pdf
Additional details
Identifiers
- Eprint ID
- 38946
- Resolver ID
- CaltechAUTHORS:20130614-102240487
Funding
- NSF
- AST-1108815
- Kavli Foundation
- Caltech Millikan Fellowship
Dates
- Created
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2013-06-18Created from EPrint's datestamp field
- Updated
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2021-11-09Created from EPrint's last_modified field