English

General Physical Properties of CGRaBS Blazars

High Energy Astrophysical Phenomena 2017-12-20 v2

Abstract

We present the results of a multi-frequency, time-averaged analysis of blazars included in the Candidate Gamma-ray Blazar Survey catalog. Our sample consists of 324 γ\gamma-ray detected (γ\gamma-ray loud) and 191 non γ\gamma-ray detected (γ\gamma-ray quiet) blazars, and we consider all the data up to 2016 April 1. We find that both the γ\gamma-ray loud and the γ\gamma-ray quiet blazar populations occupy similar regions in the WISE color-color diagram, and in the radio and X-ray bands γ\gamma-ray loud sources are brighter. A simple one-zone synchrotron inverse-Compton emission model is applied to derive the physical properties of both populations. We find that the central black hole mass and the accretion disk luminosity (LdiskL_{\rm disk}) computed from the modeling of the optical-UV emission with a Shakura-Sunyaev disk reasonably matches with that estimated from the optical spectroscopic emission-line information. A significantly larger Doppler boosting in the γ\gamma-ray loud blazars is noted, and their jets are more radiatively efficient. On the other hand, the γ\gamma-ray quiet objects are more MeV-peaked, thus could be potential targets for next-generation MeV missions. Our results confirm the earlier findings about the accretion-jet connection in blazars; however, many of the γ\gamma-ray quiet blazars tend to deviate from the recent claim that the jet power exceeds LdiskL_{\rm disk} in blazars. A broadband study, considering a larger set of γ\gamma-ray quiet objects and also including BL Lacs, will be needed to confirm/reject this hypothesis and also to verify the evolution of the powerful high-redshift blazars into their low-power nearby counterparts.

Keywords

Cite

@article{arxiv.1711.01292,
  title  = {General Physical Properties of CGRaBS Blazars},
  author = {Vaidehi S. Paliya and L. Marcotulli and M. Ajello and M. Joshi and S. Sahayanathan and A. R. Rao and D. Hartmann},
  journal= {arXiv preprint arXiv:1711.01292},
  year   = {2017}
}

Comments

28 pages, 16 figures, 10 tables. To appear in the Astrophysical journal. Full tables and figures will be available with the published version