Global 8.4-GHz VLBI observations of JVAS B0218+357
arXiv:astro-ph/0209182 · doi:10.1046/j.1365-8711.2003.06050.x
Abstract
In this paper we present new observations of the gravitational lens system JVAS B0218+357 made with a global VLBI network at a frequency of 8.4 GHz. Our maps have an rms noise of 30 microJy/beam and with these we have been able to image much of the extended structure of the radio jet in both the A and B images at high resolution (~1 mas). The main use of these maps will be to enable us to further constrain the lens model for the purposes of H0 determination. We are able to identify several sub-components common to both images with the expected parity reversal, including one which we identify as a counter-jet. We have not been successful in detecting either the core of the lensing galaxy or a third image. Using a model of the lensing galaxy we have back-projected both of the images to the source plane and find that they agree well. However, there are small, but significant, differences which we suggest may arise from multi-path scattering in the ISM of the lensing galaxy. We also find an exponent of the radial mass distribution of approximately 1.04, in agreement with lens modelling of published 15-GHz VLBI data. Polarisation maps of each image are presented which show that the distributions of polarisation across images A and B are different. We suggest that this results from Faraday rotation and associated depolarisation in the lensing galaxy.
10 pages, 5 figures, accepted for publication in MNRAS
Cited by in corpus (13)
- Strong Limit on a Variable Proton-to-Electron Mass Ratio from Molecules in the Distant Universe
- Radio, optical and infrared observations of CLASS B0128+437
- Radial density profiles of time-delay lensing galaxies
- A deep, high resolution survey of the low frequency radio sky
- Free-free absorption in the gravitational lens JVAS B0218+357
- Molecular absorptions in high-z objects
- Redshifted formaldehyde from the gravitational lens B0218+357
- Distribution of the molecular absorption in front of the quasar B0218+357
- Multiwavelength study of the gravitationally lensed blazar QSO B0218+357 between 2016 and 2020
- High-resolution imaging with the International LOFAR Telescope: Observations of the gravitational lenses MG 0751+2716 and CLASS B1600+434
- Gravitational Lens Systems to probe Extragalactic Magnetic Fields
- Using strong lensing to understand the microJy radio emission in two radio quiet quasars at redshift 1.7
- Role of the companion lensing galaxy in the CLASS gravitational lens B1152+199