SIMBAD references

2019MNRAS.489.2330C - Mon. Not. R. Astron. Soc., 489, 2330-2354 (2019/October-3)

S-band Polarization All-Sky Survey (S-PASS): survey description and maps.

CARRETTI E., HAVERKORN M., STAVELEY-SMITH L., BERNARDI G., GAENSLER B.M., KESTEVEN M.J., POPPI S., BROWN S., CROCKER R.M., PURCELL C., SCHNITZELER D.H.F.M. and SUN X.

Abstract (from CDS):

We present the S-Band Polarization All Sky Survey (S-PASS), a survey of polarized radio emission over the southern sky at Dec. ←1° taken with the Parkes radio telescope at 2.3 GHz. The main aim was to observe at a frequency high enough to avoid strong depolarization at intermediate Galactic latitudes (still present at 1.4 GHz) to study Galactic magnetism, but low enough to retain ample signal-to-noise ratio (S/N) at high latitudes for extragalactic and cosmological science. We developed a new scanning strategy based on long azimuth scans and a corresponding map-making procedure to make recovery of the overall mean signal of Stokes Q and U possible, a long-standing problem with polarization observations. We describe the scanning strategy, map-making procedure and validation tests. The overall mean signal is recovered with a precision better than 0.5 per cent. The maps have a mean sensitivity of 0.81 mK on beam-size scales and show clear polarized signals, typically to within a few degrees of the Galactic plane, with ample S/N everywhere (the typical signal in low-emission regions is 13 mK and 98.6 per cent of pixels have S/N > 3). The largest depolarization areas are in the inner Galaxy, associated with the Sagittarius Arm. We have also computed a rotation measure map combining S-PASS with archival data from the Wilkinson Microwave Anisotropy Probe (WMAP) and Planck experiments. A Stokes I map has been generated, with sensitivity limited to the confusion level of 9 mK.

Abstract Copyright: © 2019 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): magnetic fields - polarization - radiation mechanisms: non-thermal - methods: observational - Galaxy: structure - diffuse radiation

Simbad objects: 20

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