Probing the innermost regions of AGN jets and their magnetic fields with RadioAstron IV. The quasar 3C 345 at 18 cm: Magnetic field structure and brightness temperature
F. M. P\"otzl, A. P. Lobanov, E. Ros, J. L. G\'omez, G. Bruni, U., Bach, A. Fuentes, L. I. Gurvits, D. L. Jauncey, Y. Y. Kovalev, E. V., Kravchenko, M. M. Lisakov, T. Savolainen, K. V. Sokolovsky, and J. A. Zensus

TL;DR
This study uses RadioAstron to image the innermost regions of the quasar 3C 345's jet at unprecedented resolution, revealing complex magnetic field structures and extremely high brightness temperatures that challenge existing models.
Contribution
It provides the first high-resolution polarimetric images of 3C 345's jet, uncovering detailed magnetic field configurations and brightness temperatures exceeding theoretical limits.
Findings
Complex jet structure at 300 μas resolution
Magnetic fields perpendicular to the jet suggest shocks
Brightness temperature exceeds inverse Compton limit
Abstract
Context. Supermassive black holes in the centres of radio-loud active galactic nuclei (AGN) can produce collimated relativistic outflows (jets). Magnetic fields are thought to play a key role in the formation and collimation of these jets, but the details are much debated. Aims. We study the innermost jet morphology and magnetic field strength in the AGN 3C 345 with an unprecedented resolution using images obtained within the framework of the key science programme on AGN polarisation of the Space VLBI mission RadioAstron. Methods. We observed the flat spectrum radio quasar 3C 345 at 1.6 GHz on 2016 March 30 with RadioAstron and 18 ground-based radio telescopes in full polarisation mode. Results. Our images, in both total intensity and linear polarisation, reveal a complex jet structure at 300 as angular resolution, corresponding to a projected linear scale of about 2 pc or a few…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Astrophysical Phenomena and Observations · Galaxies: Formation, Evolution, Phenomena
