The relativistic parsec-scale jets of the blazars TXS 0506+056 and PKS 0502+049 and their possible association with gamma-ray flares and neutrino production
Viktor Y. D. Sumida (NAT-Universidade Cidade de S\~ao Paulo), Andr\'e, de A. Schutzer (Universit\'e Grenoble Alpes), Anderson Caproni, (NAT-Universidade Cidade de S\~ao Paulo), Zulema Abraham (IAG/USP)

TL;DR
This study investigates the parsec-scale jets of blazars TXS 0506+056 and PKS 0502+049, revealing superluminal motions, jet parameters, and potential correlations between jet activity, gamma-ray flares, and neutrino detections, supporting their role in high-energy neutrino production.
Contribution
The paper provides detailed radio interferometry analysis of blazar jets, linking jet component emergence with gamma-ray flares and neutrino events, offering new insights into jet dynamics and neutrino origins.
Findings
Superluminal jet speeds ranging from 9.5c to 66c.
Emergence of jet components coincides with gamma-ray flares.
Possible correlation between jet activity and neutrino detections.
Abstract
The physical nature of the mechanism responsible for the emission of neutrinos in active galactic nuclei (AGN) has been matter of debate in the literature, with relativistic jets of radio-loud AGNs as possible candidates to be the sources of high energy neutrinos. The most prominent candidate so far is the blazar TXS 0506+056, which is found to be associated with the neutrino event IceCube-170922A. Furthermore, the IceCube reported an excess of neutrinos towards TXS 0506+056 between September 2014 and March 2015, even though this association needs additional investigation, considering the presence of a nearby gamma-ray source, the quasar PKS 0502+049. Motivated by this, we studied the parsec-scale structures of TXS 0506+056 and PKS 0502+049 through radio interferometry at 8 and 15\,GHz. We identified twelve jet components in TXS 0506+056 and seven components in PKS 0502+049. The most…
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