Radio Jet Properties of the Flaring Gamma-Ray Blazar PKS 0346-27
Máté Krezinger, Sándor Frey, Krisztina É. Gabányi
astro-ph.GA
Submitted: 2026-07-27
Comments: 19 pages, 4 figures, accepted for publication in the journal Astronomy
Journal ref: Astronomy, Vol. 5, No. 3, id. 12 (2026)
Code: https://github.com/rstofi/VLBI_Imaging_Script
License: http://creativecommons.org/licenses/by/4.0/
The gist: The blazar PKS 0346-27 at redshift z=0.991 is among the most distant extragalactic sources detected in very high energy gamma-rays.
Terminology
Abstract
The blazar PKS 0346-27 at redshift z=0.991 is among the most distant extragalactic sources detected in very high energy gamma-rays. It underwent a major flare reaching TeV energies in November 2021. Recent modelling of its spectral energy distribution favoured a single-zone proton--synchrotron-dominated hadronic model with bulk Lorentz factor Gamma=10 over a single-zone leptonic jet model with much higher Gamma. Here we analyse archival radio data to give independent estimates of the jet bulk Lorentz factor. We present high-resolution radio imaging and brightness distribution modelling, as well as flare detection in long-term radio flux density monitoring data, and obtain Gamma< 10 values. This lends support to the hadronic model proposed for the PKS 0346-27 jet. Our results highlight the importance of long-term, very long baseline interferometry and total flux density monitoring in studying blazar jets.
Sources
- The ROSAT All-Sky Survey Bright Source Catalogue
- Characterizing Gamma-Radio Delayed Flaring Activity from Blazars
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