The Magnetic Field and Polarization Properties of Radio Galaxies in Different Accretion States
arXiv:1504.06679 · doi:10.1088/0004-637X/806/1/83
Abstract
We use the integrated polarized radio emission at 1.4 GHz () from a large sample of AGN (796 sources at redshifts ) to study the large-scale magnetic field properties of radio galaxies in relation to the host galaxy accretion state. We find a fundamental difference in between radiative-mode AGN (i.e. high-excitation radio galaxies, HERGs, and radio-loud QSOs) and jet-mode AGN (i.e. low-excitation radio galaxies, LERGs). While LERGs can achieve a wide range of (up to ), the HERGs and radio-loud QSOs are limited to . A difference in is also seen when the sample is divided at 0.5% of the total Eddington-scaled accretion rate, where the weakly accreting sources can attain higher values of . We do not find any clear evidence that this is driven by intrinsic magnetic field differences of the different radio morphological classes. Instead, we attribute the differences in to the local environments of the radio sources, in terms of both the ambient gas density and the magnetoionic properties of this gas. Thus, not only are different large-scale gaseous environments potentially responsible for the different accretion states of HERGs and LERGs, we argue that the large-scale magnetised environments may also be important for the formation of powerful AGN jets. Upcoming high angular resolution and broadband radio polarization surveys will provide the high precision Faraday rotation measure and depolarization data required to robustly test this claim.
18 pages, 17 figures, accepted for publication in ApJ
References in corpus (18)
- The Co-Evolution of Galaxies and Supermassive Black Holes: Insights from Surveys of the Contemporary Universe
- Hot and cold gas accretion and feedback in radio-loud active galaxies
- Stability of Relativistic Jets from Rotating, Accreting Black Holes via Fully Three-Dimensional Magnetohydrodynamic Simulations
- AGN-controlled cooling in elliptical galaxies
- Estimating extragalactic Faraday rotation
- A pilot study of the radio-emitting AGN population: the emerging new class of FR0 radio-galaxies
- Numerical modelling of the lobes of radio galaxies in cluster environments II: Magnetic field configuration and observability
- Structures of the magnetoionic media around the FR I radio galaxies 3C 31 and Hydra A
- The Correlation of Narrow Line Emission and X-ray Luminosity in Active Galactic Nuclei
- A search for distant radio galaxies from SUMSS and NVSS: III. radio spectral energy distributions and the z-alpha correlation
- Gemini Long-slit Observations of Luminous Obscured Quasars: Further Evidence for an Upper Limit on the Size of the Narrow-Line Region
- Degree of Polarization and Source Counts of Faint Radio Sources from Stacking Polarized Intensity
- Nature and evolution of powerful radio galaxies and their link with the quasar luminosity function
- ATLAS 1.4 GHz Data Release 2 -- II. Properties of the faint polarized sky
- Fields and Filaments in the Core of the Centaurus Cluster
- Radio galaxies and their magnetic fields out to z <= 3
- Radio sources with ultra-high polarization
- Interpreting MAD within multiple accretion regimes
Cited by in corpus (13)
- The wide-field, multiplexed, spectroscopic facility WEAVE: Survey design, overview, and simulated implementation
- Search and analysis of giant radio galaxies with associated nuclei (SAGAN) -- I : New sample and multi-wavelength studies
- The Faraday Rotation Measure Grid of the LOFAR Two-metre Sky Survey: Data Release 2
- Magnetic field disorder and Faraday effects on the polarization of extragalactic radio sources
- The First Large Absorption Survey in HI (FLASH): I. Science Goals and Survey Design
- Decoding the giant extragalactic radio sources
- Polarised structures in the radio lobes of B2 0258+35 - Evidence of magnetic draping?
- A low frequency study of linear polarization in radio galaxies
- Source Finding in Linear Polarization for LOFAR, and SKA Predecessor Surveys, using Faraday Moments
- The Apertif science verification campaign - Characteristics of polarised radio sources
- Properties of Polarized Synchrotron Emission from Fluctuation Dynamo Action -- II. Effects of Turbulence Driving in the ICM and Beam Smoothing
- A Novel Method for Estimating the Ambient Medium Density Around Distant Radio Sources from Their Observed Radio Spectra
- Revealing the intricacies of radio galaxies and filaments in the merging galaxy cluster Abell 2255. II. Properties of filaments using multi-frequency radio data