Compact radio emission from z~0.2 X-ray bright AGN
arXiv:1204.3162 · doi:10.1051/0004-6361/201118200
Abstract
Radio and X-ray emission of AGN appears to be correlated. The details of the underlying physical processes, however, are still not fully understood, i.e., to what extent is the X-ray and radio emission originating from the same relativistic particles or from the accretion-disk or corona or both. We study the cm radio emission of an SDSS/ROSAT/FIRST matched sample of 13 X-raying AGN in the redshift range 0.11< z < 0.37 at high angular resolution with the goal of searching for jet structures or diffuse, extended emission on sub-kpc scales. We use MERLIN at 18 cm for all objects and Western EVN at 18 cm for four objects to study the radio emission on scales of ~500 pc and ~40 pc for the MERLIN and EVN observations, respectively. The detected emission is dominated by compact nuclear radio structures. We find no kpc collimated jet structures. The EVN data indicate for compact nuclei on 40 pc scales, with brightness temperatures typical for accretion-disk scenarios. Comparison with FIRST shows that the 18 cm emission is resolved out up to 50% by MERLIN. Star-formation rates based on large aperture SDSS spectra are generally too small to produce considerable contamination of the nuclear radio emission. We can, therefore, assume the 18 cm flux densities to be produced in the nuclei of the AGN. Together with the ROSAT soft X-ray luminosities and black hole mass estimates from the literature, our sample objects follow closely the Merloni et al. (2003) fundamental plane relation, which appears to trace the accretion processes. Detailed X-ray spectral modeling from deeper hard X-ray observations and higher angular resolution at radio wavelengths are required to further proceed in the disentangling of jet and accretion related processes.
15 pages, 7 figures, submitted to A&A
References in corpus (20)
- Radio-Loudness of Active Galactic Nuclei: Observational Facts and Theoretical Implications
- On the X-ray, optical emission line and black hole mass properties of local Seyfert galaxies
- A Comprehensive Study of 2 000 Narrow Line Seyfert 1 Galaxies from the Sloan Digital Sky Survey: I. The Sample
- On the origin of radio emission in radio quiet quasars
- Refining the fundamental plane of accreting black holes
- The X-ray and Radio Connection in Low-luminosity Active Nuclei
- The radio structure of radio-quiet quasars
- The Diverse Properties of the Most Ultraviolet Luminous Galaxies Discovered by the Galaxy Evolution Explorer
- Narrow-line Seyfert 1 Galaxies and the M_BH - sigma Relation
- Revisiting the "Fundamental Plane" of Black Hole Activity at Extremely Low Luminosities
- A Large, Uniform Sample of X-ray Emitting AGN from the ROSAT All-Sky and Sloan Digital Sky Surveys: the Data Release 5 Sample
- Near-infrared evolution of brightest cluster galaxies in the most X-ray luminous clusters since z=1
- A Large Sample of BL Lacs from SDSS and FIRST
- The black hole fundamental plane: revisit with a larger sample of radio and X-ray emitting broad-line AGNs
- The black hole fundamental plane from a uniform sample of radio and X-ray emitting broad line AGNs
- On the origin of radio core emission in radio-quiet quasars
- The Origin of Radio Scintillation In the Local Interstellar Medium
- Emission line activity in type 2 quasars from the Sloan Digital Sky Survey
- A Chandra Survey of the X-ray Properties of Broad Absorption Line Radio-Loud Quasars
- Properties of X-ray selected Broad Absorption Line Quasars