OH Maser Sources in W49N: Probing Magnetic Field and Differential Anisotropic Scattering with Zeeman pairs using the VLBA
Avinash A. Deshpande, W. M. Goss, and J. E. Mendoza-Torres

TL;DR
This study uses VLBA observations of OH masers in W49N to analyze magnetic fields and anisotropic scattering, revealing less scattering than previous reports and potential Faraday rotation effects in the interstellar medium.
Contribution
It provides new high-resolution measurements of OH masers, showing reduced scattering and polarization differences that suggest Faraday rotation influences, advancing understanding of magnetic fields in star-forming regions.
Findings
Less scattering than previously reported
Deviation in scatter image orientation from Galactic plane magnetic field
Detection of polarization-dependent scatter broadening suggesting Faraday rotation
Abstract
Our analysis of a VLBA 12-hour synthesis observation of the OH masers in a well-known star-forming region W49N has yielded valuable data that enables us to probe distributions of magnetic fields in both the maser columns and the intervening interstellar medium (ISM). The data consisting of detailed high angular-resolution images (with beam-width ~20 milli-arc-seconds) of several dozen OH maser sources or "spots", at 1612, 1665 and 1667 MHz, reveal anisotropic scatter broadening, with typical sizes of a few tens of milli-arc-seconds and axial ratios between 1.5 to 3. Such anisotropies have been reported earlier by Desai, Gwinn & Diamond (1994) and interpreted as induced by the local magnetic field parallel to the Galactic plane. However, we find a) the apparent angular sizes on the average a factor of ~2.5 less than those reported by Desai et al. (1994), indicating significantly less…
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