Dependence of the BALQSO fraction on Radio Luminosity
arXiv:0801.4379 · doi:10.1086/591488
Abstract
We find that the fraction of classical Broad Absorption Line quasars (BALQSOs) among the FIRST radio sources in the Sloan Data Release 3, is 20.5^{+7.3}_{-5.9}% at the faintest radio powers detected (L_{\rm 1.4 GHz}~10^{32} erg/s), and rapidly drops to <8% at L_{\rm 1.4 GHz}~3*10^{33} erg/s. Similarly, adopting the broader Absorption Index (AI) definition of Trump et al. (2006) we find the fraction of radio BALQSOs to be 44^{+8.1}_{-7.8}% reducing to 23.1^{+7.3}_{-6.1}% at high luminosities. While the high fraction at low radio power is consistent with the recent near-IR estimates by Dai et al. (2008), the lower fraction at high radio powers is intriguing and confirms previous claims based on smaller samples. The trend is independent of the redshift range, the optical and radio flux selection limits, or the exact definition of a radio match. We also find that at fixed optical magnitude, the highest bins of radio luminosity are preferentially populated by non-BALQSOs, consistent with the overall trend. We do find, however, that those quasars identified as AI-BALQSOs but \emph{not} under the classical definition, do not show a significant drop in their fraction as a function of radio power, further supporting independent claims for which these sources, characterized by lower equivalent width, may represent an independent class with respect to the classical BALQSOs. We find the balnicity index, a measure of the absorption trough in BALQSOs, and the mean maximum wind velocity to be roughly constant at all radio powers. We discuss several plausible physical models which may explain the observed fast drop in the fraction of the classical BALQSOs with increasing radio power, \emph{although no one is entirely satisfactory}. (abridged).
replaced with version accepted by ApJ; more complete analysis; basic results unchanged
References in corpus (15)
- Biases in Virial Black Hole Masses: An SDSS Perspective
- Radio-Loudness of Active Galactic Nuclei: Observational Facts and Theoretical Implications
- The Radio-Loud Fraction of Quasars is a Strong Function of Redshift and Optical Luminosity
- Signals from the Noise: Image Stacking for Quasars in the FIRST Survey
- The Intrinsic Fraction of Broad Absorption Line Quasars
- On the Fraction of Quasars with Outflows
- Outflows and the Physical Properties of Quasars
- Luminous K-band Selected Quasars from UKIDSS
- Observational Constraints on the Dependence of Radio-Quiet Quasar X-ray Emission on Black Hole Mass and Accretion Rate
- Infrared Transmission Spectra for Extrasolar Giant Planets
- The Physical Nature of Polar Broad Absorption Line Quasars
- On the origin of radio core emission in radio-quiet quasars
- The growth of the nuclear black holes in submillimeter galaxies
- The Optical-Radio Mapping: the kinetic efficiency of Radio-Loud AGNs
- XMM observations of BAL Quasars with polar outflows
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- MALS SALT-NOT survey of MIR-selected powerful radio-bright AGN at 0<z<3.5
- A VLBI survey of compact broad absorption line quasars with balnicity index BI>0
- A VLBI survey of compact Broad Absorption Lines (BAL) quasars with BALnicity Index BI=0
- Radio-Loud and Radio-Quiet BAL Quasars: A Detailed Ultraviolet Comparison
- Fraction of broad absorption line quasars in different radio morphologies
- Estimating the Jet Power of Mrk\,231 During the 2017-2018 Flare
- The Quasar 3C 47: Extreme Population B Jetted Source With Double-peaked Profile
- A Search for Blazar Activity in Broad-Absorption-Line Quasars
- A Giant Metrewave Radio Telescope Survey of Radio-loud Broad Absorption Line Quasars
- Broadband nuclear emission in two radio-loud BAL quasars