English

SALT Spectropolarimetry and Self-Consistent SED and Polarization Modeling of Blazars

High Energy Astrophysical Phenomena 2017-08-01 v1

Abstract

We report on recent results from a target-of-opportunity program to obtain spectropolarimetry observations with the Southern African Large Telescope (SALT) on flaring gamma-ray blazars. SALT spectropolarimetry and contemporaneous multi-wavelength spectral energy distribution (SED) data are being modelled self-consistently with a leptonic single-zone model. Such modeling provides an accurate estimate of the degree of order of the magnetic field in the emission region and the thermal contributions (from the host galaxy and the accretion disk) to the SED, thus putting strong constraints on the physical parameters of the gamma-ray emitting region. For the specific case of the γ\gamma-ray blazar 4C+01.02, we demonstrate that the combined SED and spectropolarimetry modeling constrains the mass of the central black hole in this blazar to MBH109MM_{\rm BH} \sim 10^9 \, M_{\odot}.

Keywords

Cite

@article{arxiv.1707.09764,
  title  = {SALT Spectropolarimetry and Self-Consistent SED and Polarization Modeling of Blazars},
  author = {Markus Boettcher and Brian van Soelen and Richard J. Britto and David A. H. Buckley and Johannes P. Marais and Hester Schutte},
  journal= {arXiv preprint arXiv:1707.09764},
  year   = {2017}
}

Comments

Submitted to Galaxies - Proceedings of "Polarized Emission from Astrophysical Jets", Ierapetra, Crete, June 12 - 16, 2017