Low frequency observations of linearly polarized structures in the interstellar medium near the south Galactic pole
Emil Lenc, B. M. Gaensler, X. H. Sun, E. M. Sadler, A. G. Willis, N., Barry, A. P. Beardsley, M. E. Bell, G. Bernardi, J. D. Bowman, F. Briggs, J., R. Callingham, R. J. Cappallo, P. Carroll, B. E. Corey, A. de Oliveira-Costa,, A. A. Deshpande, J. S. Dillon, K. S. Dwarkanath

TL;DR
This study uses deep 154 MHz polarimetric observations with the MWA to analyze large-scale polarized structures in the interstellar medium near the south Galactic pole, revealing intrinsic emission features and foreground effects.
Contribution
First long-wavelength, in-band frequency-dependent analysis of polarized structures in the interstellar medium at 154 MHz, demonstrating the detection of large-scale structures and Faraday depths.
Findings
Detected large-scale polarized structures of 1-8 degrees in extent.
Measured Faraday depths ranging from -2 to 10 rad/m^2, peaking at +1 rad/m^2.
Estimated the polarized emission distance at approximately 51 parsecs.
Abstract
We present deep polarimetric observations at 154 MHz with the Murchison Widefield Array (MWA), covering 625 deg^2 centered on RA=0 h, Dec=-27 deg. The sensitivity available in our deep observations allows an in-band, frequency-dependent analysis of polarized structure for the first time at long wavelengths. Our analysis suggests that the polarized structures are dominated by intrinsic emission but may also have a foreground Faraday screen component. At these wavelengths, the compactness of the MWA baseline distribution provides excellent snapshot sensitivity to large-scale structure. The observations are sensitive to diffuse polarized emission at ~54' resolution with a sensitivity of 5.9 mJy beam^-1 and compact polarized sources at ~2.4' resolution with a sensitivity of 2.3 mJy beam^-1 for a subset (400 deg^2) of this field. The sensitivity allows the effect of ionospheric Faraday…
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