The 492 GHz emission of Sgr A* constrained by ALMA
arXiv:1604.00599 · doi:10.1051/0004-6361/201628176
Abstract
We report linearly polarized continuum emission properties of Sgr A* at 492 GHz, based on the Atacama Large Millimeter Array (ALMA) observations. We used the observations of the likely unpolarized continuum emission of Titan, and the observations of C\textsc{i} line emission, to gauge the degree of spurious polarization. The Stokes I flux of 3.60.72 Jy during our run is consistent with extrapolations from the previous, lower frequency observations. We found that the continuum emission of Sgr A* at 492 GHz shows large amplitude differences between the XX and the YY correlations. The observed intensity ratio between the XX and YY correlations as a function of parallactic angle may be explained by a constant polarization position angle of 1583. The fitted polarization percentage of Sgr A* during our observational period is 14\%1.2\%. The calibrator quasar J1744-3116 we observed at the same night can be fitted to Stokes I = 252 mJy, with 7.9\%0.9\% polarization in position angle P.A. = 4.14.2. The observed polarization percentage and polarization position angle in the present work appear consistent with those expected from longer wavelength observations in the period of 1999-2005. In particular, the polarization position angle at 492 GHz, expected from the previously fitted 1677 intrinsic polarization position angle and (-5.60.7)10 rotation measure, is 155, which is consistent with our new measurement of polarization position angle within 1. The polarization percentage and the polarization position angle may be varying over the period of our ALMA 12m Array observations, which demands further investigation with future polarization observations.
10 pages, 6 figures, 1st referee report received and revised
References in corpus (9)
- An Unambiguous Detection of Faraday Rotation in Sagittarius A*
- Polarimetry of near-infrared flares from Sagittarius A*
- The Rotation Measure and 3.5mm Polarization of Sgr A*
- The Submillimeter Polarization of Sgr A*
- Jet-lag in Sgr A*: What size and timing measurements tell us about the central black hole in the Milky Way
- A strong magnetic field in the jet base of a supermassive black hole
- Polarized light from Sgr A* in the near-infrared -band
- Dual differential polarimetry. A technique to recover polarimetric information from dual polarization observations
- The Nature of Linearly Polarized Millimeter and Sub-millimeter Emission in Sagittarius A*
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