The MASIV Survey IV: relationship between intra-day scintillation and intrinsic variability of radio AGNs
arXiv:1711.08140 · doi:10.1093/mnras/stx3076
Abstract
We investigate the relationship between 5 GHz interstellar scintillation (ISS) and 15 GHz intrinsic variability of compact, radio-selected AGNs drawn from the Microarcsecond Scintillation-Induced Variability (MASIV) Survey and the Owens Valley Radio Observatory (OVRO) blazar monitoring program. We discover that the strongest scintillators at 5 GHz (modulation index, ) all exhibit strong 15 GHz intrinsic variability (). This relationship can be attributed mainly to the mutual dependence of intrinsic variability and ISS amplitudes on radio core compactness at as scales, and to a lesser extent, on their mutual dependences on source flux density, arcsec-scale core dominance and redshift. However, not all sources displaying strong intrinsic variations show high amplitude scintillation, since ISS is also strongly dependent on Galactic line-of-sight scattering properties. This observed relationship between intrinsic variability and ISS highlights the importance of optimizing the observing frequency, cadence, timespan and sky coverage of future radio variability surveys, such that these two effects can be better distinguished to study the underlying physics. For the full MASIV sample, we find that Fermi-detected gamma-ray loud sources exhibit significantly higher 5 GHz ISS amplitudes than gamma-ray quiet sources. This relationship is weaker than the known correlation between gamma-ray loudness and the 15 GHz variability amplitudes, most likely due to jet opacity effects.
18 pages, 13 figures, 5 tables, resubmitted to MNRAS after minor revision
References in corpus (12)
- Doppler factors, Lorentz factors and viewing angles for quasars, BL Lacertae objects and radio galaxies
- Sub-milliarcsecond Imaging of Quasars and Active Galactic Nuclei III. Kinematics of Parsec-Scale Radio Jets
- CGRaBS: An All-Sky Survey of Gamma-Ray Blazar Candidates
- The VLBA Imaging and Polarimetry Survey at 5 GHz
- Time-correlation between the radio and gamma-ray activity in blazars and the production site of the gamma-ray emission
- The Fifth VLBA Calibrator Survey: VCS5
- The Micro-Arcsecond Scintillation-Induced Variability (MASIV) Survey II: The First Four Epochs
- Long-term radio variability of AGN: flare characteristics
- A search for variable and transient radio sources in the extended Chandra Deep Field South at 5.5 GHz
- The intra-hour variable quasar J18193845: 13-year evolution, jet polarization structure and interstellar scattering screen properties
- Serendipitous VLBI detection of rapid, large-amplitude, intraday variability in QSO 1156+295
- Why Do Compact Active Galactic Nuclei at High Redshift Scintillate Less?
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