English

Broadband Modelling of Orphan Gamma Ray Flares

High Energy Astrophysical Phenomena 2020-12-21 v1

Abstract

Blazars, a class of highly variable active galactic nuclei, sometimes exhibit Orphan γ\gamma-ray flares. These flares having high flux only in γ\gamma-ray energies do not show significant variations in flux at lower energies. We study the temporal and spectral profile of these Orphan γ\gamma-ray flares in detail from three γray\gamma-ray bright blazars, 3C 273, PKS 1510-089 and 3C 279 and also their simultaneous broadband emissions. We find that the variability timescales of the Orphan γ\gamma-ray flares were (0.96±0.28)(0.96\pm0.28) days, (3.12±2.40)(3.12\pm2.40) hr and (2.16±0.72)(2.16\pm0.72) hr, for 3C 273, PKS 1510-089 and 3C 279, respectively. The broadband spectral energy distributions (SEDs) during these flares have been modelled with a leptonic model from two emission regions. This model suggests that Orphan γ\gamma-ray flares might have originated from inverse Compton scattering of relativistic electrons by the seed photons from the broad-line region or dusty torus, which is the first region. While the second broader region, lying further down the jet, could be responsible for X-ray and radio emissions. The possible locations of these emission regions in the jets of the three sources have been estimated from SED modelling.

Keywords

Cite

@article{arxiv.2012.10291,
  title  = {Broadband Modelling of Orphan Gamma Ray Flares},
  author = {S. R. Patel and D. Bose and N. Gupta and M. Zuberi},
  journal= {arXiv preprint arXiv:2012.10291},
  year   = {2020}
}

Comments

12 pages, 10 figures, Accepted for publication in JHEAp