Synchrotron radio emission in radio-quiet AGNs
arXiv:1010.5591 · doi:10.1051/0004-6361/201014987
Abstract
The basic mechanism responsible for radio emission in radio-loud active galactic nuclei (AGNs) is assumed to be synchrotron radiation. We suggest here that radio emission in radio-quiet objects is also due to synchrotron radiation of particles accelerated in shocks. We consider generic shocks and study the resulting synchrotron properties. We estimate the synchrotron radio luminosity and compare it with the X-ray component produced by inverse Compton emission. We obtain that the radio to X-ray luminosity ratio is much smaller than unity, with values typical of radio-quiet sources. The predicted trends on source parameters, black hole mass and accretion rate, may account for the anticorrelation between radio-loudness and Eddington ratio observed in different AGN samples.
5 pages, accepted for publication in Astronomy and Astrophysics
References in corpus (7)
- Radio-Loudness of Active Galactic Nuclei: Observational Facts and Theoretical Implications
- On the origin of radio emission in radio quiet quasars
- The X-ray and Radio Connection in Low-luminosity Active Nuclei
- Are young radio sources in equipartition?
- X-ray power law spectra in active galactic nuclei
- AGN's UV and X-ray luminosities in clumpy accretion flows
- X-ray variability time scales in Active Galactic Nuclei
Cited by in corpus (11)
- Star formation in quasar hosts and the origin of radio emission in radio-quiet quasars
- AGN Coronal Emission models I. The Predicted Radio Emission
- Winds as the origin of radio emission in radio-quiet extremely red quasars
- Sub-parsec radio cores in nearby Seyfert galaxies
- Background of radio photons from primordial black holes
- Ab Initio Cosmological Simulations of CR7 as an Active Black Hole
- Fundamental Reference AGN Monitoring Experiment (FRAMEx) III: Radio Emission in the Immediate Vicinity of Radio Quiet AGNs
- Connecting MeerKAT radio continuum properties to GAMA optical emission-line and WISE mid-infrared activity
- Jet-mode feedback in NGC 5972: insights from resolved MUSE, GMRT and VLA observations
- Exploring the radio spectral energy distribution of the ultraluminous radio-quiet quasar SDSS J0100+2802 at redshift 6.3
- Radio signals from early direct collapse black holes