Demonstration of Ultrawideband Polarimetry Using VLBI Exploration of Radio Astrometry (VERA)
arXiv:2212.10144 · doi:10.3390/galaxies10060114
Abstract
We report on recent technical developments in the front- and back-ends for the four 20 m radio telescopes of the Japanese Very-Long-Baseline Interferometry (VLBI) project, VLBI Exploration of Radio Astrometry (VERA). We present a brief overview of a dual-circular polarization receiving and ultrawideband (16 Giga bit s) recording systems that were installed on each of the four telescopes operating at 22 and 43 GHz bands. The wider-band capability improves the sensitivity of VLBI observations for continuum emission, and the dual-polarization capability enables the study of magnetic fields in relativistic jets ejected from supermassive black holes in active galactic nuclei and in sites of star formation and around evolved stars. We present the linear polarization intensity maps of extragalactic sources at 22 and 43 GHz obtained from the most recent test observations to show the state of the art of the VERA polarimetric observations. At the end of this article, given the realization of VLBI polarimetry with VERA, we describe the future prospects for scientific aims and further technical developments.
14 pages, 7 figures, 3 tables, published in the Special issue " Challenges in Understanding Black Hole Powered Jets with VLBI", Galaxies Journal
References in corpus (4)
- Kinematics of Parsec-Scale Jets of Gamma-Ray Blazars at 43~GHz within the VLBA-BU-BLAZAR Program
- MOJAVE: XV. VLBA 15 GHz Total Intensity and Polarization Maps of 437 Parsec-Scale AGN Jets From 1996-2017
- MOJAVE: Monitoring of Jets in Active Galactic Nuclei with VLBA Experiments. VIII. Faraday rotation in parsec-scale AGN jets
- Magnetic Fields in the Center of the Perseus Cluster
Cited by in corpus (3)
- Trigonometric parallax and proper motion of Sagittarius A* measured by VERA using the new broad-band back-end system OCTAVE-DAS
- Probing the Heart of Active Narrow-line Seyfert 1 Galaxies with VERA Wideband Polarimetry
- Quantification of propagation modes in an astronomical instrument from its radiation pattern