Discovery of Molecular Line Polarization in the Disk of TW Hya
Abstract
We report observations of polarized line and continuum emission from the disk of TW~Hya using the Atacama Large Millimeter/submillimeter Array. We target three emission lines, CO (3-2), CO (3-2) and CS (7-6), to search for linear polarization due to the Goldreich-Kylafis effect, while simultaneously tracing the continuum polarization morphology at 332\,GHz (900\,\micron{}), achieving a spatial resolution of 0.5\arcsec{} (30~au). We detect linear polarization in the dust continuum emission; the polarization position angles show an azimuthal morphology, and the median polarization fraction is \,0.2\%, comparable to previous, lower frequency observations. Adopting a `shift-and-stack' technique to boost the sensitivity of the data, combined with a linear combination of the and components to account for their azimuthal dependence, we detect weak linear polarization of CO and CO line emission at a and significance, respectively. The polarization was detected in the line wings, reaching a peak polarization fraction of and for the two molecules between disk radii of 0.5" and 1". The sign of the polarization was found to flip from the blue-shifted side of the emission to the red-shifted side, suggesting a complex, asymmetric polarization morphology. Polarization is not robustly detected for the CS emission; however, a tentative signal, comparable in morphology to that found for the CO and CO emission, is found at a significance. We are able to reconstruct a polarization morphology, consistent with the azimuthally averaged profiles, under the assumption that this is also azimuthally symmetric, which can be compared with future higher-sensitivity observations.
Keywords
Cite
@article{arxiv.2109.09247,
title = {Discovery of Molecular Line Polarization in the Disk of TW Hya},
author = {Richard Teague and Chat L. H. Hull and Stéphane Guilloteau and Edwin A. Bergin and Anne Dutrey and Thomas Henning and Rolf Kuiper and Dmitry Semenov and Ian W. Stephens and Wouter H. T. Vlemmings},
journal= {arXiv preprint arXiv:2109.09247},
year = {2021}
}
Comments
Accepted by ApJ