VLBA and Chandra Observations of Jets in FRI radio galaxies: Constraints on Jet Evolution
P. Kharb (1), C. O'Dea (1,2), A. Tilak (3), S. Baum (1,4), E. Haynes, (1), J. Noel-Storr (1), C. Fallon (1), K. Christiansen (1) ((1) Rochester, Institute of Technology, (2) CfA, (3) SAO, (4) Radcliffe Institute for, Advanced Study)

TL;DR
This study combines VLBA and Chandra observations to analyze the structure, polarization, and X-ray emission of jets in FRI radio galaxies, revealing magnetic field configurations and jet dynamics.
Contribution
It provides new high-resolution radio polarization data and X-ray observations, offering insights into magnetic fields and jet acceleration mechanisms in FRI galaxies.
Findings
Polarized emission detected in 7 jets at 5 GHz.
Jet intensity decreases with distance following a power law.
X-ray jets are common in the sample, indicating a ubiquitous process.
Abstract
(ABRIDGED) We present here the results from new Very Long Baseline Array observations at 1.6 and 5 GHz of 19 galaxies of a complete sample of 21 UGC FRI radio galaxies. New Chandra data of two sources, viz., UGC00408 and UGC08433, are combined with the Chandra archival data of 13 sources. The 5 GHz observations of ten "core-jet" sources are polarization-sensitive, while the 1.6 GHz observations constitute second epoch total intensity observations of nine "core-only" sources. Polarized emission is detected in the jets of seven sources at 5 GHz, but the cores are essentially unpolarized, except in M87. Polarization is detected at the jet edges in several sources, and the inferred magnetic field is primarily aligned with the jet direction. This could be indicative of magnetic field "shearing" due to jet-medium interaction, or the presence of helical magnetic fields. The jet peak intensity…
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