Population statistics of beamed sources. II: Evaluation of Doppler factor estimates
arXiv:1412.2638 · doi:10.1093/mnras/stv2028
Abstract
In a companion paper we presented a statistical model for the blazar population, consisting of distributions for the unbeamed radio luminosity function and the Lorentz factor distribution of each of the BL Lac and Flat Spectrum Radio Quasar (FSRQ) classes. Our model has been optimized so that it reproduces the MOJAVE distributions of apparent speeds and redshifts when the appropriate flux limit is applied and a uniform distribution of jet viewing angles is assumed for the population. Here we use this model to predict the Doppler factor distribution for various flux-limited samples for which Doppler factors have been estimated in a variety of ways (equipartition, variability + equipartition, inverse Compton dominance) on a blazar-by-blazar basis. By comparing the simulated and data-estimated Doppler factor distributions in each case, we evaluate the different methods of estimating blazar Doppler factors. We find that the variability Doppler factors assuming equipartition are the ones in the best agreement with our statistical model, whereas the inverse Compton Doppler factor method is only suitable for FSRQs. In the case of variability Doppler factors, we find that while random errors are relatively low (), uncertainties are dominated by systematic effects. In the case of inverse Compton Doppler factors, random errors appear to dominate, but are significantly larger ().
11 pages, 17 figures, published in MNRAS
References in corpus (9)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Fast TeV variability in blazars: jets in a jet
- 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
- Correlated Multi-Waveband Variability in the Blazar 3C~279 from 1996 to 2007
- MOJAVE: Monitoring of Jets in AGN with VLBA Experiments. IV. The Parent Luminosity Function of Radio-Loud 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. I: A new model for blazars
- Cosmological evolution of compact AGN at 15 GHz
Cited by in corpus (21)
- 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
- RoboPol: Connection between optical polarization plane rotations and gamma-ray flares in blazars
- F-GAMMA: Variability Doppler factors of blazars from multiwavelength monitoring
- High energy neutrino flux from individual blazar flares
- RoboPol: Do optical polarization rotations occur in all blazars?
- Compact steep-spectrum sources as the parent population of flat-spectrum radio-loud NLS1s
- Characteristic Variability Timescales in the Gamma-ray Power Spectra of Blazars
- Multiwavelength Study of High-Redshift Blazars
- The long-term centimeter variability of active galactic nuclei: A new relation between variability timescale and accretion rate
- The estimation of -ray Doppler factor for Fermi/LAT-detected blazars
- The Relativistic Jet Orientation and Host Galaxy of the Peculiar Blazar PKS 1413+135
- Using variability and VLBI to measure cosmological distances
- Scale invariant jets: from blazars to microquasars
- Detecting the Elusive Blazar Counter-Jets
- Multi-wavelength study of blazar 4C +01.02 during its long-term flaring activity in 2014-2017
- Reconciling inverse-Compton Doppler factors with variability Doppler factors in blazar jets
- Estimating the distribution of rest-frame timescales for blazar jets: a statistical approach
- Moderate Correlation between the Accretion Disk and Jet Power in a Large Sample of Fermi Blazars
- Radio Jet Properties of the Flaring Gamma-Ray Blazar PKS 0346-27
- Identifying changing jets through their radio variability