Linear polarization structures in LOFAR observations of the interstellar medium in the 3C196 field
V. Jeli\'c, A. G. de Bruyn, V. N. Pandey, M. Mevius, M. Haverkorn, M., A. Brentjens, L. V. E. Koopmans, S. Zaroubi, F. B. Abdalla, K. M. B. Asad, S., Bus, E. Chapman, B. Ciardi, E. R. Fernandez, A. Ghosh, G. Harker, I. T., Iliev, H. Jensen, S. Kazemi, G. Mellema, A. R. Offringa

TL;DR
This paper uses LOFAR and WSRT observations to analyze linear polarization structures in the interstellar medium of the 3C196 field, revealing filamentary features and magnetic field properties through RM synthesis.
Contribution
First detailed polarization and Faraday depth analysis of the 3C196 field combining LOFAR and WSRT data, identifying a prominent filament and estimating magnetic field parameters.
Findings
Detected polarized emission with brightness temperature 5-15 K
Identified a straight filament at Faraday depth +0.5 rad/m^2
Estimated mean line-of-sight magnetic field of 0.3 μG
Abstract
This study aims to characterize linear polarization structures in LOFAR observations of the interstellar medium (ISM) in the 3C196 field, one of the primary fields of the LOFAR-Epoch of Reionization key science project. We have used the high band antennas (HBA) of LOFAR to image this region and Rotation Measure (RM) synthesis to unravel the distribution of polarized structures in Faraday depth. The brightness temperature of the detected Galactic emission is in polarized intensity and covers the range from -3 to +8 in Faraday depth. The most interesting morphological feature is a strikingly straight filament at a Faraday depth of running from north to south, right through the centre of the field and parallel to the Galactic plane. There is also an interesting system of linear depolarization canals conspicuous in an image showing…
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