paper

Detection Thresholds and Bias Correction in Polarized Intensity

arXiv:1106.5362 · doi:10.1071/AS11027

Abstract

Detection thresholds in polarized intensity and polarization bias correction are investigated for surveys where the polarization information is obtained from RM synthesis. Considering unresolved sources with a single rotation measure, a detection threshold of applied to the Faraday spectrum will retrieve the RM with a false detection rate less than , but polarized intensity is more strongly biased than Ricean statistics suggest. For a detection threshold of , the false detection rate increases to ~4%, depending also on coverage and the extent of the Faraday spectrum. Non-Gaussian noise in Stokes Q and U due to imperfect imaging and calibration can be represented by a distribution that is the sum of a Gaussian and an exponential. The non-Gaussian wings of the noise distribution increase the false detection rate in polarized intensity by orders of magnitude. Monte-Carlo simulations assuming non-Gaussian noise in Q and U, give false detection rates at similar to Ricean false detection rates at .

8 pages, 8 figures, accepted for publication in Publications of the Astronomical Society of Australia

References in corpus (5)

Cited by in corpus (44)