Probing the extended emission-line region in 3C171 with high-frequency radio polarimetry
arXiv:astro-ph/0209612 · doi:10.1046/j.1365-8711.2003.06102.x
Abstract
I present high-frequency polarimetric radio observations of the radio galaxy 3C171, in which depolarization is associated with an extended emission-line region. The radio hotspots, known to be depolarized at low radio frequencies, become significantly polarized above (observer's-frame) frequencies of 15 GHz. There is some evidence that some of the Faraday rotation structure associated with the emission-line regions is being resolved at the highest resolutions (0.1 arcsec, or 400 pc); however, the majority remains unresolved. Using the new radio data and a simple model for the nature of the depolarizing screen, it is possible to place some constraints on the nature of the medium responsible for the depolarization. I argue that it is most likely that the depolarization is due not to the emission-line material itself but to a second, less dense, hot phase of the shocked ISM, and derive some limits on its density and temperature.
7 pages, MNRAS accepted
References in corpus (1)
Cited by in corpus (9)
- The nature of the jet-driven outflow in the radio galaxy 3C305
- Chandra Observations of 3C Radio Sources with z<0.3: Nuclei, Diffuse Emission, Jets and Hotspots
- X-ray emission from the extended emission-line region of the powerful radio galaxy 3C171
- The Quasar Feedback Survey: Revealing the Interplay of Jets, Winds & Emission Line Gas in Type 2 Quasars with Radio Polarization
- A low frequency study of linear polarization in radio galaxies
- Resolving the Shocks in Radio Galaxy Nebulae: HST and Radio Imaging of 3C 171, 3C277.3 and PKS2250-41
- A depolarizing HI tidal tail in the western lobe of Fornax A
- Focusing on the extended X-ray emission in 3C 459 with a Chandra follow-up observation
- Numerical modelling of the lobes of radio galaxies VI. Polarimetric simulations of universal pressure profile cluster atmospheres