English

Low optical polarisation at the core of the optically-thin jet of M87

Astrophysics of Galaxies 2020-06-17 v3 High Energy Astrophysical Phenomena

Abstract

We study the optical linear and circular polarisation in the optically-thin regime of the core and jet of M87. Observations were acquired two days before the Event Horizon Telescope (EHT) campaign in early April 2017. A high degree (20\sim 20 per cent) of linear polarisation (Plin_{\rm lin}) is detected in the bright jet knots resolved at 10arcsec\sim 10\, \rm{arcsec} to 23arcsec23\, \rm{arcsec} (0.80.8-1.8kpc1.8\, \rm{kpc}) from the centre, whereas the nucleus and inner jet show Plin5_{\rm lin} \lesssim 5 per cent. The position angle of the linear polarisation shifts by 90\sim 90 degrees from each knot to the adjacent ones, with the core angle perpendicular to the first knot. The nucleus was in a low level of activity (Plin2_{\rm lin} \sim 2-33 per cent), and no emission was detected from HST-1. No circular polarisation was detected either in the nucleus or the jet above a 3σ3\sigma level of Pcirc1.5_{\rm circ} \leq 1.5 per cent, discarding the conversion of Plin_{\rm lin} into Pcirc_{\rm circ}. A disordered magnetic field configuration or a mix of unresolved knots polarised along axes with different orientations could explain the low Plin_{\rm lin}. The latter implies a smaller size of the core knots, in line with current interferometric observations. Polarimetry with EHT can probe this scenario in the future. A steep increase of both Plin_{\rm lin} and Pcirc_{\rm circ} with increasing frequency is expected for the optically-thin domain, above the turnover point. This work describes the methodology to recover the four Stokes parameters using a λ/4\lambda/4 wave-plate polarimeter.

Keywords

Cite

@article{arxiv.2005.14719,
  title  = {Low optical polarisation at the core of the optically-thin jet of M87},
  author = {A. Y. Fresco and J. A. Fernández-Ontiveros and M. A. Prieto and J. A. Acosta-Pulido and A. Merloni},
  journal= {arXiv preprint arXiv:2005.14719},
  year   = {2020}
}

Comments

Accepted for publication in MNRAS. 10 pages, 8 figures