Reconciling inverse-Compton Doppler factors with variability Doppler factors in blazar jets
arXiv:1503.04780 · doi:10.1051/0004-6361/201629902
Abstract
Blazar population models have shown that the inverse-Compton and variability Doppler factor estimates yield consistent results at the population level for flat spectrum radio quasars (FSRQs). The two methods, however, are inconsistent when compared on a source-by-source basis. In this work, we attempt to understand the source of the discrepancy by tracing the potential sources of systematic and statistical error for the inverse-Compton Doppler factors. By eliminating these sources of error, we provide stronger constrains on the value of the Doppler factor in blazar jets. We re-estimate the inverse-Compton Doppler factor for 11 sources that meet certain criteria for their synchrotron peak frequency and the availability of Doppler factor estimates in the literature. We compare these estimates with the average of two different estimates of the variability Doppler factor obtained using various datasets and methodologies to identify any discrepancies and, in each case, trace their sources in the methodology or assumptions adopted. We identify three significant sources of error for the inverse-Compton Doppler factors: a) contamination of the X-ray flux by non-synchrotron self-Compton emission; b) radio observations at frequencies other than the synchrotron turnover frequency; c) non-simultaneity between radio and X-ray observations. We discuss key aspects in the correct application of the inverse-Compton method in light of these potential errors. We are able to constrain the Doppler factor of 3C273, 3C345, 3C454.3, PKS1510-089, and PKS1633+382 effectively, since all available estimates from both methods converge to the same values for these five sources.
8 pages, 5 figures, published in A&A
References in corpus (16)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Probing the Inner Jet of the Quasar PKS 1510-089 with Multi-waveband Monitoring during Strong Gamma-ray Activity
- Doppler factors, Lorentz factors and viewing angles for quasars, BL Lacertae objects and radio galaxies
- MOJAVE: Monitoring of Jets in AGN with VLBA Experiments. V. Multi-epoch VLBA Images
- RoboPol: The optical polarization of gamma-ray--loud and gamma-ray--quiet blazars
- MOJAVE XII: Acceleration and Collimation of Blazar Jets on Parsec Scales
- RoboPol: optical polarization-plane rotations and flaring activity in blazars
- Radio jet emission from GeV-emitting narrow-line Seyfert 1 galaxies
- F-GAMMA: Variability Doppler factors of blazars from multiwavelength monitoring
- RoboPol: Do optical polarization rotations occur in all blazars?
- Comprehensive Monitoring of Gamma-ray Bright Blazars. I. Statistical Study of Optical, X-ray, and Gamma-ray Spectral Slopes
- Simultaneous Radio to (Sub-) mm-Monitoring of Variability and Spectral Shape Evolution of potential GLAST Blazars
- The soft X-ray properties of AGN from the CJF sample; A correlation analysis between soft X-ray and VLBI properties
- Population statistics of beamed sources. II: Evaluation of Doppler factor estimates
- Population statistics of beamed sources. I: A new model for blazars
- Multi-Frequency VLBI Observations of NRAO 530
Cited by in corpus (8)
- Constraining the limiting brightness temperature and Doppler factors for the largest sample of radio bright blazars
- Kinematics of Parsec-Scale Jets of Gamma-Ray Bright Blazars at 43 GHz during Ten Years of the VLBA-BU-BLAZAR Program
- The estimation of -ray Doppler factor for Fermi/LAT-detected blazars
- Probing the innermost regions of AGN jets and their magnetic fields with RadioAstron IV. The quasar 3C 345 at 18 cm: Magnetic field structure and brightness temperature
- Scale invariant jets: from blazars to microquasars
- TANAMI: Tracking Active Galactic Nuclei with Austral Milliarcsecond Interferometry. III. First-epoch S band images
- Estimating the feasibility of `standard speed-gun' distances
- Superluminal Motion and Jet Parameters in the Gamma-ray-Emitting Narrow-Line Seyfert 1 Galaxy TXS 1206+549