Polarized Mid-Infrared Synchrotron Emission in the Core of Cygnus A
Abstract
We present high-angular (~0.4") resolution mid-infrared (MIR) polarimetric observations in the 8.7 m and 11.6 m filters of Cygnus A using CanariCam on the 10.4-m Gran Telescopio CANARIAS. A highly polarized nucleus is observed with a degree of polarization of 113% and 123% and position angle of polarization of 278 degrees and 358 degrees in a 0.38" (~380 pc) aperture for each filter. The observed rising of the polarized flux density with increasing wavelength is consistent with synchrotron radiation from the pc-scale jet close to the core of Cygnus A. Based on our polarization model, the synchrotron emission from the pc-scale jet is estimated to be 14% and 17% of the total flux density in the 8.7 m and 11.6 m filters, respectively. A blackbody component with a characteristic temperature of 220 K accounts for >75% of the observed MIR total flux density. The blackbody emission arises from a combination of (1) dust emission in the torus; and (2) diffuse dust emission around the nuclear region, but the contributions of the two components cannot be well constrained in these observations.
Keywords
Cite
@article{arxiv.1407.6365,
title = {Polarized Mid-Infrared Synchrotron Emission in the Core of Cygnus A},
author = {E. Lopez-Rodriguez and C. Packham and C. Tadhunter and R. Mason and E. Perlman and A. Alonso-Herrero and C. Ramos Almeida and K. Ichikawa and N. A. Levenson and J. M. Rodrıguez-Espinosa and C. A. Alvarez and E. A. Ramırez and C. M. Telesco},
journal= {arXiv preprint arXiv:1407.6365},
year = {2015}
}
Comments
8 pages, 2 figures (Accepted for publication in ApJ)