Unveiling the quasar main sequence: illuminating the complexity of active galactic nuclei and their evolution
arXiv:2410.09262 · doi:10.3389/fspas.2024.1479874
Abstract
The Eigenvector 1 schema, or the main sequence of quasars, was introduced as an analogous scheme to the HR diagram that would allow us to understand the more complex, extended sources - active galactic nuclei (AGNs) that harbor accreting supermassive black holes. The study has spanned more than three decades and has advanced our knowledge of the diversity of Type-1 AGNs from both observational and theoretical aspects. The quasar main sequence, in its simplest form, is the plane between the FWHM of the broad H emission line and the strength of the optical FeII emission to the H. While the former allows the estimation of the black hole mass, the latter enables direct measurement of the metal content and traces the accretion rate of the AGN. Together, they allow us to track the evolution of AGN in terms of the activity of the central nuclei, its effect on the line-emitting regions surrounding the AGN, and their diversity making them suitable distance indicators to study the expansion of our Universe. This mini-review aims to provide (i) a brief history leading up to the present day in the study of the quasar main sequence, (ii) introduce us to the many possibilities to study AGNs with the main sequence as a guiding tool, and (iii) highlight some recent, exciting lines of researches at the frontier of this ever-growing field.
Mini Review Article based on the invited talk in Frontiers in Astronomy and Space Sciences: A Decade of Discovery and Advancement - 10th Anniversary Conference. This version matches the published version (19-09-2024)
References in corpus (44)
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM
- A Catalog of Quasar Properties from SDSS DR7
- Active Galactic Nuclei: what's in a name?
- The Discovery of the First "Changing Look" Quasar: New Insights into the Physics & Phenomenology of AGN
- The diversity of quasars unified by accretion and orientation
- 4MOST: Project overview and information for the First Call for Proposals
- X-CIGALE: fitting AGN/galaxy SEDs from X-ray to infrared
- Fe II Emission in 14 Low-Redshift Quasars: I - Observations
- Supermassive Black Holes with High Accretion Rates in Active Galactic Nuclei. IV. H Time Lags and Implications for Super-Eddington Accretion
- The Radius-Luminosity Relationship Depends on Optical Spectra in Active Galactic Nuclei
- A Systematic Analysis of Fe II Emission in Quasars: Evidence for Inflow to the Central Black Hole
- Machine Learning in Astronomy: a practical overview
- A possible mechanism for multiple changing look phenomenon in Active Galactic Nuclei
- Self-shadowing Effects of Slim Accretion Disks in Active Galactic Nuclei: Diverse Appearance of the Broad-line Region
- Supermassive Black Holes with High Accretion Rates in Active Galactic Nuclei. III. Detection of Fe II Reverberation in Nine Narrow-Line Seyfert 1 Galaxies
- A new class of flares from accreting supermassive black holes
- Highly Accreting Quasars: Sample Definition and Possible Cosmological Implications
- Long-term variability of the optical spectra of NGC 4151: I. Light curves and flux correlations
- Dissecting the quasar main sequence: insight from host galaxy properties
- State-of-the-art AGN SEDs for Photoionization Models: BLR Predictions Confront the Observations
- Super-Eddington QSO RX J0439.6-5311. II. Multi-wavelength Constraints on the Global Structure of the Accretion Flow
- Exploring Changing-look Active Galactic Nuclei with the Sloan Digital Sky Survey V: First Year Results
- Searching for changing-state AGNs in massive datasets -- I: applying deep learning and anomaly detection techniques to find AGNs with anomalous variability behaviours
- Improved Fe II emission line models for AGN using new atomic datasets
- Confirming new changing--look AGNs discovered through optical variability using a random-forest based light curve classifier
- CLOUDY view of the warm corona
- OI and CaII observations in intermediate redshift quasars
- A New Iron Emission Template for Active Galactic Nuclei. I. Optical Template for the H region
- Supermassive Black Hole and Broad-line Region in NGC~5548: Results from Five-season Reverberation Mapping
- The rise and fall of the iron-strong nuclear transient PS16dtm
- Fe II emission in active galactic nuclei
- Panchromatic Properties of the Extreme FeII Emitter PHL 1092
- High Metal Content of Highly Accreting Quasars: Analysis of an Extended Sample
- Extreme quasars as distance indicators in cosmology
- The Extreme Super-Eddington NLS1 RX J0134.2-4258 -- II. A Weak-Line Seyfert Linking to the Weak-Line Quasar
- The Wide-field Spectroscopic Telescope (WST) Science White Paper
- Linear Spectropolarimetric Analysis of Fairall 9 with VLT/FORS2
- Spectral variability studies in Active Galactic Nuclei: Exploring continuum and emission line regions in the age of LSST and JWST
- Saturation of the curve -- diagnostics of the continuum and H emission in Population B active galaxy NGC 5548
- The extremes of AGN variability: outbursts, deep fades, changing looks, exceptional spectral states, and semi-periodicities
- Changing-look Active Galactic Nuclei from the Dark Energy Spectroscopic Instrument. II. Statistical Properties from the First Data Release
- Modelling the quasar spectra for super-Eddington sources -- The What, the Why and the How
- Spectroastrometry and Reverberation Mapping (SARM) of Active Galactic Nuclei. I. The H Broad-line Region Structure and Black Hole Mass of Five Quasars