A search for signatures of quasar evolution: Comparison of the shapes of the rest-frame optical/UV continua of quasars at z>3 and z~0.1
arXiv:astro-ph/0105255 · doi:10.1086/322535
Abstract
For 15 bright (V<17.5), high redshift (z>3) quasars, we have obtained IR spectra and photometry, and optical spectrophotometry and photometry, which we use to construct their rest-frame 1285-5100 AA spectral energy distributions (SEDs). High resolution spectroscopy for 7 and L' detections of 4 extend their SEDs shortwards of Ly_alpha or redwards of 7500 AA. The average luminosities within a set of narrow, line-free, windows are computed. Power law fits to those from 1285 to 5100 AA, but excluding the 2000-4000 AA region of the FeII+BaC `small bump', adequately characterize the continuum shapes of most of the objects and yield optical/UV spectral indices (aouv: fnu ~ nu^{aouv}). To look for signs of evolution, we compare the distribution of the aouv for the z>3 quasars with that for a set of 27 z~0.1 quasars which are matched to the high redshift(z) ones in evolved luminosity. The mean (median) aouv for the high and low z samples are -0.32(-0.29) and -0.38(-0.40), respectively. Neither the distributions nor means differ significantly. The distributions of aouv for both samples span a wide range however, with Delta~1, which could be understood as the result of both a diversity in the emitted continua themselves and in the amounts of intrinsic extinction undergone. A clear difference between the high and low z samples occurs in the region of `small bump'. The power law fit residuals for the low z sample show a systematic excess from 2200-3000 AA ; this feature is weak or absent in the high z sample. Further study is needed, but the `small bump' evolution could reflect differences in iron abundance or FeII energy source, or alternatively, an intrinsic turnover in the continuum itself which is present at low but not at high z. (Abridged)
87 pages, incl. 11 figures & 24 tables, ApJS in press. Corrected the mean(median) aouv's quoted in the abstracts (astro-ph version and actual), a formula in section 2 and various typos
References in corpus (1)
Cited by in corpus (43)
- An Observational Determination of the Bolometric Quasar Luminosity Function
- Mass Functions of the Active Black Holes in Distant Quasars from the Large Bright Quasar Survey, the Bright Quasar Survey, and the Color-Selected Sample of the SDSS Fall Equatorial Stripe
- Discovery of three z>6.5 quasars in the VISTA Kilo-degree Infrared Galaxy (VIKING) survey
- Dust covering factor, silicate emission and star formation in luminous QSOs
- Spectral Classification of Quasars in the Sloan Digital Sky Survey: Eigenspectra; Redshift and Luminosity Effects
- CAIXA: a Catalogue of AGN In the XMM-Newton Archive I. Spectral analysis
- The z=5 Quasar Luminosity Function from SDSS Stripe 82
- Early Growth and Efficient Accretion of Massive Black Holes at High Redshift
- Broad-line Balmer Decrements in Blue Active Galactic Nuclei
- XMM-Newton spectroscopy of high-redshift QSOs
- A Census of Intrinsic Narrow Absorption Lines in the Spectra of Quasars at z=2-4
- The origin of the UV excess in powerful radio galaxies: spectroscopy and polarimetry of a complete sample of intermediate redshift radio galaxies
- The Faint End of the z=5 Quasar Luminosity Function from the CFHTLS
- Extinction due to amorphous carbon grains in red quasars from the SDSS
- High Redshift Quasars and Star Formation in the Early Universe
- A survey of luminous high-redshift quasars with SDSS and WISE II. the bright end of the quasar luminosity function at z ~ 5
- Chandra Survey of Radio-quiet, High-redshift Quasars
- Faint AGN and the Ionizing Background
- The Faint End of the Quasar Luminosity Function at from the Subaru Hyper Suprime-Cam Survey
- High redshift quasars and the supermassive black hole mass budget: constraints on quasar formation models
- How does the Polar Dust affect the Correlation between Dust Covering Factor and Eddington Ratio in Type 1 Quasars Selected from the Sloan Digital Sky Survey Data Release 16?
- Plausible fluorescent Ly-alpha emitters around the z=3.1 QSO0420-388
- Simulating Wide-Field Quasar Surveys from the Optical to Near-Infrared
- The near-IR properties and continuum shapes of high redshift quasars from the Sloan Digital Sky Survey
- High redshift radio quiet quasars -- exploring parameter space of accretion models. Part II: patchy corona model
- A universal average spectral energy distribution for quasars from optical to extreme ultraviolet
- Reaching the Peak of the quasar spectral energy distribution - II. Exploring the accretion disc, dusty torus and host galaxy
- High redshift radio quiet quasars - exploring the parameter space of accretion models. Part I: hot semi-spherical flow
- Host Galaxies of z=4 Quasars
- An Apparent Redshift Dependence of Quasar Continuum: Implication for Cosmic Dust Extinction?
- The Reddest DR3 SDSS/XMM Quasars
- The Extremely Luminous Quasar Survey (ELQS) in the Sloan Digital Sky Survey footprint. II. The North Galactic Cap Sample
- A long look at the BALQSO LBQS 2212-1759 with XMM-Newton
- The Infrared Medium-deep Survey. III. Survey of Luminous Quasars at 4.7 z 5.4
- The missing FeII bump in faint JWST AGN: possible evidence for metal-poor broad-line regions at early cosmic times
- Paving the Way for Euclid and JWST via Optimal Selection of High-z Quasars
- Revisiting the Completeness and the Luminosity Function in High-Redshift Low-Luminosity Quasar Surveys
- XMM-Newton spectroscopy of high redshift quasars
- The X-ray absorber of PKS2126-158
- The near-infrared SED of blue quasars: what drives the evolution of the dusty torus?
- Deep CFHT Y-band Imaging of VVDS-F22 Field: II. Quasar Selection and Quasar Luminosity Function
- Rest-frame optical continua of L ~ L*, z>3 quasars: probing the faint end of the high z quasar luminosity function
- Growth of supermassive black holes and metallicity in quasars