Unifying B2 radio galaxies with BL Lac objects
arXiv:astro-ph/0209099 · doi:10.1046/j.1365-8711.2003.06039.x
Abstract
In an earlier paper we presented nuclear X-ray flux densities, measured with ROSAT, for the B2 bright sample of nearby low-luminosity radio galaxies. In this paper we construct a nuclear X-ray luminosity function for the B2 radio galaxies, and discuss the consequences of our results for models in which such radio galaxies are the parent population of BL Lac objects. Based on our observations of the B2 sample, we use Monte Carlo techniques to simulate samples of beamed radio galaxies, and use the selection criteria of existing samples of BL Lac objects to compare our simulated results to what is observed. We find that previous analytical results are not applicable since the BL Lac samples are selected on beamed flux density. A simple model in which BL Lacs are the moderately beamed (gamma ~ 3) counterparts of radio galaxies, with some random dispersion (~ 0.4 decades) in the intrinsic radio-X-ray relationship, can reproduce many of the features of the radio-selected and X-ray-selected BL Lac samples, including their radio and X-ray luminosity functions and the distributions of their radio-to-X-ray spectral indices. In contrast, models in which the X-ray and radio emission have systematically different beaming parameters cannot reproduce important features of the radio-galaxy and BL Lac populations. The redshift distribution and number counts of the X-ray-selected EMSS sample are well reproduced by our best models, supporting a picture in which these objects are beamed FRI radio galaxies with intrinsic luminosities similar to those of the B2 sample. However, we cannot match the redshift distribution of the radio-selected 1-Jy sample, and it is likely that a population of FRII radio galaxies is responsible for the high-redshift objects in this sample. [abridged]
Accepted for MNRAS. 14 pages
References in corpus (4)
- Radio sources in the 2dF Galaxy Redshift Survey - II. Local radio luminosity functions for AGN and star-forming galaxies at 1.4 GHz
- A Chandra observation of the X-ray environment and jet of 3C31
- Chandra finds X-ray jets are common in low-power radio galaxies
- The LBDS Hercules sample of mJy radio sources at 1.4 GHz - II. Redshift distribution, radio luminosity function, and the high-redshift cut-off
Cited by in corpus (23)
- Decelerating Flows in TeV Blazars: A Resolution to the BL Lac -- FR I Unification Problem
- From the Blazar Sequence to the Blazar Envelope: Revisiting the Relativistic Jet Dichotomy in Radio-loud AGN
- The X-ray nuclei of intermediate-redshift radio sources
- The active nuclei of z<1.0 3CRR radio sources
- The Chandra view of the 3C/FRI sample of low luminosity radio-galaxies
- Recollimation and Radiative Focusing of Relativistic Jets: Applications to Blazars and M87
- A Large Sample of BL Lacs from SDSS and FIRST
- Bayesian inference of jet bulk-flow speeds in FRII radio sources
- The bulk Lorentz factor crisis of TeV blazars : evidence for an inhomogeneous pileup energy distribution ?
- The Relativistic Jet Dichotomy and the End of the Blazar Sequence
- The radio properties of a complete, X-ray selected sample of nearby, massive elliptical galaxies
- On the Origin of Rapid Flares in TeV Blazars
- Radiation from relativistic jets in blazars and the efficient dissipation of their bulk energy via photon breeding
- Dust tori in radio galaxies
- High-Energy Aspects of Astrophysical Jets
- Where Centaurus A gets its X-ray knottiness
- Determining the core radio luminosity function of radio AGNs via copula
- Which radio galaxies can make the highest-energy cosmic rays?
- On the nature of optical nuclei in FR I radio-galaxies from ACS/HST imaging polarimetry
- Bulk Motion of Ultrarelativistic Conical Blazar Jets
- 870 micron observations of nearby 3CRR radio galaxies
- Collimation and Radiative Deceleration of Jets in TeV AGNs
- Photon breeding mechanism in relativistic jets: astrophysical implications