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The High Redshift Blazar S5 0836+71: A Broadband Study

High Energy Astrophysical Phenomena 2015-05-20 v1

Abstract

A broadband study of the high redshift blazar S5 0836+71 (z = 2.172) is presented. Multi-frequency light curves show multiple episodes of X-ray and γ\gamma-ray flares, while optical-UV fluxes show little variations. During the GeV outburst, the highest γ\gamma-ray flux measured is (5.22 ±\pm 1.10) ×\times 106^{-6} ph cm2^{-2} s1^{-1} in the range of 0.1-300 GeV, which corresponds to an isotropic γ\gamma-ray luminosity of (1.62 ±\pm 0.44) ×\times 1050^{50} erg s1^{-1}, thereby making this as one of the most luminous γ\gamma-ray flare ever observed from any blazar. A fast γ\gamma-ray flux rising time of \sim3 hours is also noticed which is probably the first measurement of hour scale variability detected from a high redshift (z > 2) blazar. The various activity states of S5 0836+71 are reproduced under the assumption of single zone leptonic emission model. In all the states, the emission region is located inside the broad line region, and the optical-UV radiation is dominated by the accretion disk emission. The modeling parameters suggests the enhancement in bulk Lorentz factor as a primary cause of the γ\gamma-ray flare. The high X-ray activity with less variable γ\gamma-ray counterpart can be due to emission region to be located relatively closer to the black hole where the dominating energy density of the disk emission results in higher X-ray flux due to inverse-Compton scattering of disk photons.

Keywords

Cite

@article{arxiv.1502.07227,
  title  = {The High Redshift Blazar S5 0836+71: A Broadband Study},
  author = {Vaidehi S. Paliya},
  journal= {arXiv preprint arXiv:1502.07227},
  year   = {2015}
}

Comments

41 pages, 9 figures, 6 tables, to appear in The Astrophysical Journal. arXiv admin note: text overlap with arXiv:1501.07363

R2 v1 2026-06-22T08:37:50.725Z