The phylogeny of quasars and the ontogeny of their central black holes
arXiv:1702.02468 · doi:10.3389/fspas.2017.00001
Abstract
The connection between multifrequency quasar observational and physical parameters related to accretion processes is still open to debate. In the last 20 year, Eigenvector 1-based approaches developed since the early papers by Boroson and Green (1992) and Sulentic et al. (2000b) have been proven to be a remarkably powerful tool to investigate this issue, and have led to the definition of a quasar "main sequence". In this paper we perform a cladistic analysis on two samples of 215 and 85 low-z quasars (z 0.7) which were studied in several previous works and which offer a satisfactory coverage of the Eigenvector 1-derived main sequence. The data encompass accurate measurements of observational parameters which represent key aspects associated with the structural diversity of quasars. Cladistics is able to group sources radiating at higher Eddington ratios, as well as to separate radio-quiet (RQ) and radio-loud (RL) quasars. The analysis suggests a black hole mass threshold for powerful radio emission and also properly distinguishes core-dominated and lobe-dominated quasars, in accordance with the basic tenet of RL unification schemes. Considering that black hole mass provides a sort of "arrow of time" of nuclear activity, a phylogenetic interpretation becomes possible if cladistic trees are rooted on black hole mass: the ontogeny of black holes is represented by their monotonic increase in mass. More massive radio-quiet Population B sources at low-z become a more evolved counterpart of Population A i.e., wind dominated sources to which the "local" Narrow-Line Seyfert 1s belong.
References in corpus (18)
- Radio-Loudness of Active Galactic Nuclei: Observational Facts and Theoretical Implications
- The diversity of quasars unified by accretion and orientation
- Radio-loud Narrow-Line Type 1 Quasars
- A fast and long-lived outflow from the supermassive black hole in NGC 5548
- CIV 1549 as an Eigenvector 1 Parameter for Active Galactic Nuclei
- The faint radio sky: radio astronomy becomes mainstream
- Cosmic Evolution of Mass Accretion Rate and Metalicity in Active Galactic Nuclei
- New Insights on the QSO Radio-Loud/Radio-Quiet Dichotomy: SDSS Spectra in the Context of the 4D Eigenvector1 Parameter Space
- Is there an upper limit to black hole masses?
- Spectral Properties From Lyman-alpha to H-alpha For An Essentially Complete Sample of Quasars I: Data
- VLT/ISAAC Spectra of the H-beta Region in Intermediate-Redshift Quasars II. Black Hole Mass and Eddington Ratio
- GTC Spectra of z ~ 2.3 Quasars: Comparison with Local Luminosity Analogues
- 3C 57 as an Atypical Radio-Loud Quasar: Implications for the Radio-Loud/Radio-Quiet Dichotomy
- Evidence of the Dynamics of Relativistic Jet Launching in Quasars
- Magnetorotationally driven wind cycles in local disc models
- The Intrinsic Quasar Luminosity Function: Accounting for Accretion Disk Anisotropy
- A modern view of galaxies and their stellar populations
- Active Galaxies in the Sloan Digital Sky Survey II: galaxy and activity evolution
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- Extreme quasars as distance indicators in cosmology
- High Eddington quasars as discovery tools: current state and challenges
- AGN Broad Line Region variability in the context of Eigenvector 1: case of NGC 5548
- Line shapes in narrow-line Seyfert 1 galaxies: a tracer of physical properties?
- Linear Spectropolarimetric Analysis of Fairall 9 with VLT/FORS2
- Phylogenetic Analyses of Quasars and Galaxies
- Past, present and Future of the Scaling Relations of Galaxies and Active Galactic Nuclei
- Quasars: from the Physics of Line Formation to Cosmology
- Evidence of jet induced optical microvariability in radio-loud Narrow Line Seyfert 1 Galaxies