Gamma-ray luminosity function of Gamma-ray bright AGNs
arXiv:0811.4388 · doi:10.1088/1674-4527/9/1/007
Abstract
Detection of Gamma-ray emission from a class of active galactic nuclei (viz blazars), has been one of the important findings from the Compton Gamma Ray Observatory (CGRO). However, their Gamma-ray luminosity function has not been well determined. Few attempts have been made in earlier works, where BL Lacs and Flat Spectrum Radio Quasars (FSRQs) have been considered as a single source class. In this paper we investigated the evolution and Gamma-ray luminosity function of FSRQs and BL Lacs separately. Our investigation indicates no evolution for BL Lacs, however FSRQs show significant evolution. Pure luminosity evolution is assumed for FSRQs and exponential and power law evolution models are examined. Due to the small number of sources, the low luminosity end index of the luminosity function for FSRQs is constrained with upper limit. BL Lac luminosity function shows no signature of break. As a consistency check, the model source distributions deriving from these luminosity functions show no significant departure from the observed source distributions.
corrected typos, modified the captions of figure 10 and figure 11
References in corpus (2)
Cited by in corpus (8)
- Bright AGN Source List from the First Three Months of the Fermi Large Area Telescope All-Sky Survey
- The Luminosity Function of Fermi-detected Flat-Spectrum Radio Quasars
- Contribution of the Gamma-ray Loud Radio Galaxies Core Emissions to the Cosmic MeV and GeV Gamma-Ray Background Radiation
- The Contribution of Blazars to the Extragalactic Diffuse Gamma-ray Background and Their Future Spatial Resolution
- Models of the Contribution of Blazars to the Anisotropy of the Extragalactic Diffuse Gamma-ray Background
- Disk-outflow coupling: Energetics around spinning black holes
- The uncorrelated long term gamma-ray and X-ray variability of blazars and its implications on disk-jet coupling
- Observational evidences for spinning black holes: A proof of general relativity for spacetime around rotating black holes