RoboPol: First season rotations of optical polarization plane in blazars
Abstract
We present first results on polarization swings in optical emission of blazars obtained by RoboPol, a monitoring program of an unbiased sample of gamma-ray bright blazars specially designed for effective detection of such events. A possible connection of polarization swing events with periods of high activity in gamma rays is investigated using the dataset obtained during the first season of operation. It was found that the brightest gamma-ray flares tend to be located closer in time to rotation events, which may be an indication of two separate mechanisms responsible for the rotations. Blazars with detected rotations have significantly larger amplitude and faster variations of polarization angle in optical than blazars without rotations. Our simulations show that the full set of observed rotations is not a likely outcome (probability ) of a random walk of the polarization vector simulated by a multicell model. Furthermore, it is highly unlikely () that none of our rotations is physically connected with an increase in gamma-ray activity.
Keywords
Cite
@article{arxiv.1505.07467,
title = {RoboPol: First season rotations of optical polarization plane in blazars},
author = {D. Blinov and V. Pavlidou and I. Papadakis and S. Kiehlmann and G. Panopoulou and I. Liodakis and O. G. King and E. Angelakis and M. Baloković and H. Das and R. Feiler and L. Fuhrmann and T. Hovatta and P. Khodade and A. Kus and N. Kylafis and I. Myserlis and D. Modi and B. Pazderska and E. Pazderski and I. Papamastorakis and T. J. Pearson and C. Rajarshi and A. Ramaprakash and P. Reig and A. C. S. Readhead and K. Tassis and J. A. Zensus},
journal= {arXiv preprint arXiv:1505.07467},
year = {2016}
}
Comments
16 pages, 9 figures