Thermal-infrared imaging of 3C radio galaxies at z~1
arXiv:astro-ph/9902087 · doi:10.1046/j.1365-8711.1999.02582.x
Abstract
We present the results of a programme of thermal-IR imaging of nineteen z~1 radio galaxies from the 3CR and 3CRR samples. We detect emission at L' (3.8um) from four objects; in each case the emission is unresolved at 1" resolution. Fifteen radio galaxies remain undetected to sensitive limits of L'~15.5. Using these data in tandem with archived HST data and near-IR spectroscopy we show that 3 of the detected `radio galaxies' (3C22, 3C41, and 3C65) harbour quasars reddened by Av<5. Correcting for this reddening 3C22 and 3C41 are very similar to coeval 3C quasars, whilst 3C65 seems unusually underluminous. The fourth radio galaxy detection (3C265) is a more highly obscured (Av~15) but otherwise typical quasar which previously has been evident only in scattered light. We determine the fraction of dust-reddened quasars at z~1 to be 28(+25)(-13)% at 90% confidence. On the assumption that the undetected radio galaxies harbour quasars similar to those in 3C22, 3C41 and 3C265 (as seems reasonable given their similar narrow emission line luminosities) we deduce extinctions of Av>15 towards their nuclei. The contributions of reddened quasar nuclei to the total K-band light ranges from ~0 per cent for the non-detections, through ~10 per cent for 3C265 to ~80 per cent for 3C22 and 3C41. Correcting for these effects does not remove the previously reported differences between the K magnitudes of 3C and 6C radio galaxies, so contamination by reddened quasar nuclei is not a serious problem for drawing cosmological conclusions from the K-z relation for radio galaxies. We discuss these results in the context of the `receding torus' model which predicts a small fraction of lightly-reddened quasars in samples of high radio luminosity sources. We also examine the likely future importance of thermal-IR imaging in the study of distant powerful radio sources.
17 pages incl 14 figures, accepted by MNRAS
References in corpus (9)
- HST, radio and infrared observations of 28 3CR radio galaxies at redshift z ~ 1: I. Old stellar populations in central cluster galaxies
- A first sample of faint radio sources with virtually complete redshifts: I. Infrared images, the Hubble diagram, and the alignment effect
- HST, radio and infrared observations of 28 3CR radio galaxies at redshift z ~ 1: I. The observations
- A new look at the isotropy of narrow line emission in extragalactic radio sources
- The Radio-Optical Correlation in Steep-Spectrum Quasars
- Red quasars not so dusty
- Scattered Radiation from Obscured Quasars in Distant Radio Galaxies
- Morphology and Surface Brightness Evolution of z\sim1.1 Radio Galaxies
- K-band polarimetry of seven high-redshift radio galaxies
Cited by in corpus (45)
- A Unified, Merger-Driven Model for the Origin of Starbursts, Quasars, the Cosmic X-Ray Background, Supermassive Black Holes and Galaxy Spheroids
- An Observational Determination of the Bolometric Quasar Luminosity Function
- The emission line - radio correlation for radio sources using the 7C Redshift Survey
- The Bolometric Quasar Luminosity Function at z = 0-7
- The luminosity dependence of the Type 1 AGN fraction
- Chasing highly obscured QSOs in the COSMOS field
- Near-infrared imaging and the K-z relation for radio galaxies in the 7C Redshift Survey
- Spitzer Reveals Hidden Quasar Nuclei in Some Powerful FR II Radio Galaxies
- Optical and Near-IR Imaging of Ultra Steep Spectrum Radio Sources - The K-z diagram of radio and optically selected galaxies
- A sample of 6C radio sources designed to find objects at redshift > 4: III --- imaging and the radio galaxy K-z relation
- The Reddest Quasars
- The Origins of AGN Obscuration: The 'Torus' as a Dynamical, Unstable Driver of Accretion
- Radio imaging of the Subaru/XMM-Newton Deep Field - III. Evolution of the radio luminosity function beyond z=1
- The quasar fraction in low-frequency selected complete samples and implications for unified schemes
- A population of high-redshift type-2 quasars-I. Selection Criteria and Optical Spectra
- Emission line outflows in PKS1549-79: the effects of the early stages of radio source evolution?
- Implications for unified schemes from the quasar fraction and emission-line luminosities in radio-selected samples
- ISOCAM survey and dust models of 3CR radio galaxies and quasars
- Sub-millimetre observations of the Hubble Deep Field and Flanking Fields
- A sample of 6C radio sources with virtually complete redshifts. II - optical spectroscopy
- Are Most Low-Luminosity AGN Really Obscured?
- Why Are AGN and Host Galaxies Misaligned?
- Dust emission from 3C radio galaxies and quasars: New ISO observations favour the unified scheme
- Extremely red galaxy counterparts to 7C radio sources
- The Evolution of the Stellar Hosts of Radio Galaxies
- The Reddest Quasars II. A gravitationally-lensed FeLoBAL quasar
- Optical and Near-Infrared Integral Field Spectroscopy of the SCUBA Galaxy N2-850.4
- The hyperluminous infrared quasar 3C 318 and its implications for interpreting sub-mm detections of high-redshift radio galaxies
- Millimetre observations of a sample of high-redshift obscured quasars
- Infrared photometry of z~1 3C quasars
- Black-hole masses, accretion rates and hot- and cold-mode accretion in radio galaxies at z~1
- Direct evidence of the receding `torus' around central nuclei of powerful radio sources
- Near-infrared spectroscopy of powerful compact steep-spectrum radio sources
- The radio galaxy 3C 356 and clues to the trigger mechanisms for powerful radio sources
- 1-5 micron imaging of 3CRR galaxies: The K-z relation and the geometry of the torus
- The discovery of a type-II quasar at z = 1.65 with integral-field spectroscopy
- The host galaxies of micro-Jansky radio sources
- Dust and gas obscuration in ELAIS Deep X-ray Survey reddened quasars
- Herschel-ATLAS/GAMA: What determines the far-infrared properties of radio-galaxies?
- Quasars are more luminous than radio galaxies - so what?
- Thermal Infrared 3--5 m Colors of Obscured and Unobscured Active Galactic Nuclei
- Powerful Radio Sources in the Southern Sky. I. Optical Identifications
- Probing the nuclear obscuration in radio-galaxies with near infrared imaging
- Powerful Radio Sources in the Southern Sky. II. A SWIFT X-Ray Perspective
- Most supermassive black hole growth is obscured by dust