Multifrequency VLA observations of the FR I radio galaxy 3C 31: morphology, spectrum and magnetic field
R. A. Laing (1), A. H. Bridle (2), P. Parma (3), L. Feretti (3), G., Giovannini (3, 4), M. Murgia (3, 5), R. A. Perley (2) ((1) ESO, (2) NRAO, (3), INAF-IRA, (4) U. Bologna, (5) INAF-Cagliari)

TL;DR
This study uses high-resolution VLA images to analyze the detailed morphology, spectral structure, and magnetic field configuration of the FR I radio galaxy 3C 31, revealing complex filamentary substructures and spectral variations related to jet dynamics.
Contribution
It provides the first detailed spectral and magnetic field analysis of 3C 31 across multiple frequencies, linking spectral features to jet deceleration and magnetic field orientation.
Findings
Filamentary substructure in jets and tails revealed
Spectral indices vary with distance from the nucleus
X-ray emission correlates with particle acceleration processes
Abstract
We present high-quality VLA images of the FR I radio galaxy 3C 31 in the frequency range 1365 to 8440 MHz with angular resolutions from 0.25 to 40 arcsec. Our new images reveal complex, well resolved filamentary substructure in the radio jets and tails. We also use these images to explore the spectral structure of 3C 31 on large and small scales. We infer the apparent magnetic field structure by correcting for Faraday rotation. Some of the intensity substructure in the jets is clearly related to structure in their apparent magnetic field: there are arcs of emission where the degree of linear polarization increases, with the apparent magnetic field parallel to the ridges of the arcs. The spectral indices are significantly steeper (0.62) within 7 arcsec of the nucleus than between 7 and 50 arcsec (0.52 - 0.57). The spectra of the jet edges are also slightly flatter than the average for…
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