The Fundamental Planes of Black Hole Activity for Radio-Loud and Radio-Quiet Quasars
arXiv:2201.04666 · doi:10.1093/mnras/stac1153
Abstract
We examine the fundamental plane of black hole activity for correlations with redshift and radio loudness in both radio-loud and radio-quiet quasar populations. Sources are compiled from archival data of both radio-loud and radio-quiet quasars over redshifts to produce a sample of 353 sources with known X-ray, radio, and black hole mass measurements. A fundamental plane of accretion activity is fit to a sample of radio-loud and radio-quiet quasars, and we find a dichotomy between radio-loud and radio-quiet sources. The set of best-fit equations that best describe the two samples are for our radio-loud sample and for our radio-quiet sample. Our results suggest that the average radio-quiet quasar emission is consistent with advection dominated accretion, while a combination of jet and disc emission dominates in radio-loud quasars. We additionally examine redshift trends amongst the radio-loud and radio-quiet samples, and we observe a redshift dependence for the fundamental plane of radio-loud quasars. Lastly, we utilize the fundamental plane as a black hole mass estimation method and determine it useful in studying systems where standard spectral modeling techniques are not viable.
Accepted to MNRAS, 9 pages, 5 figures, 3 tables, 1 supplemental table included. Corrected data of 4 sources in the supplemental table. Conclusions remain unchanged
References in corpus (16)
- Radio-Loudness of Active Galactic Nuclei: Observational Facts and Theoretical Implications
- The X-ray Properties of the Most-Luminous Quasars from the Sloan Digital Sky Survey
- Signals from the Noise: Image Stacking for Quasars in the FIRST Survey
- The Fundamental Plane of Accretion Onto Black Holes with Dynamical Masses
- Refining the fundamental plane of accreting black holes
- On the Evolution of and High-Energy Emission from GHz-Peaked-Spectrum Sources
- The Fundamental Plane of Black Hole Accretion and its Use as a Black Hole-Mass Estimator
- New Insights on the QSO Radio-Loud/Radio-Quiet Dichotomy: SDSS Spectra in the Context of the 4D Eigenvector1 Parameter Space
- Supermassive Black Hole Growth and Merger Rates from Cosmological N-body Simulations
- The frequency of extreme X-ray variability of radio-quiet quasars
- Inverse-Compton scattering in the resolved jet of the high-redshift quasar PKS J1421-0643
- Two Candidate High-Redshift X-ray Jets Without Coincident Radio Jets
- The X-ray spectral and variability properties of typical radio-loud quasars
- X-ray Properties of Young Radio Quasars at z > 4.5
- Discovery of Candidate X-ray Jets in High-Redshift Quasars
- Proof of CMB-driven X-ray brightening of high-z radio galaxies
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- Cosmic evolution of radio-excess AGNs in quiescent and star-forming galaxies across
- BASS XLVII: 22 GHz Radio Atlas of Swift-BAT Selected AGN
- Radio observations of four active galactic nuclei hosting intermediate-mass black hole candidates: studying the outflow activity and evolution
- Prospects for Observing High-redshift Radio-loud Quasars in the SKA Era: Paving the Way for 21-cm Forest Observations
- Testing the Radio-Selection Method of Dual Active Galactic Nuclei in the Stripe 82 Field
- Exploring the X-ray-radio connection for AGN via measurements of the multi-dimensional luminosity function
- Spectroscopic confirmation of the galaxy clusters CARLA J0950+2743 at z=2.363, and CARLA-Ser J0950+2743 at z=2.243
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