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Hot dust obscured galaxies with excess blue light: dual agn or single agn under extreme conditions?

Authors :
M. Brightman
Franz E. Bauer
Jingwen Wu
Ryan C. Hickox
Chao-Wei Tsai
Steven L. Finkelstein
Dominic J. Walton
Tanio Díaz-Santos
David M. Alexander
Peter Eisenhardt
Daniel Stern
Roberto J. Assef
Andrew Blain
Source :
Astrophysical Journal, Artículos CONICYT, CONICYT Chile, instacron:CONICYT
Publication Year :
2016

Abstract

Hot Dust-Obscured Galaxies (Hot DOGs) are a population of hyper-luminous infrared galaxies identified by the WISE mission from their very red mid-IR colors, and characterized by hot dust temperatures ($T>60~\rm K$). Several studies have shown clear evidence that the IR emission in these objects is powered by a highly dust-obscured AGN that shows close to Compton-thick absorption at X-ray wavelengths. Thanks to the high AGN obscuration, the host galaxy is easily observable, and has UV/optical colors usually consistent with those of a normal galaxy. Here we discuss a sub-population of 8 Hot DOGs that show enhanced rest-frame UV/optical emission. We discuss three scenarios that might explain the excess UV emission: (i) unobscured light leaked from the AGN by reflection over the dust or by partial coverage of the accretion disk; (ii) a second unobscured AGN in the system; or (iii) a luminous young starburst. X-ray observations can help discriminate between these scenarios. We study in detail the blue excess Hot DOG WISE J020446.13-050640.8, which was serendipitously observed by Chandra/ACIS-I for 174.5 ks. The X-ray spectrum is consistent with a single, hyper-luminous, highly absorbed AGN, and is strongly inconsistent with the presence of a secondary unobscured AGN. Based on this, we argue that the excess blue emission in this object is most likely either due to reflection or a co-eval starburst. We favor the reflection scenario as the unobscured star-formation rate needed to power the UV/optical emission would be $\gtrsim 1000~\rm M_{\odot}~\rm yr^{-1}$. Deep polarimetry observations could confirm the reflection hypothesis.<br />13 pages, 7 figures, 2 tables. Accepted for publication in The Astrophysical Journal

Details

Language :
English
Database :
OpenAIRE
Journal :
Astrophysical Journal, Artículos CONICYT, CONICYT Chile, instacron:CONICYT
Accession number :
edsair.doi.dedup.....e12c95d70f8ecc6d182caef7933ccb39