A MeerKAT Polarization Survey of Southern Calibration Sources

A. R. Taylor, L. S. Legodi
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Abstract

We report on full-Stokes L-band observations of 98 MeerKAT calibration sources. Linear polarization is detected in 71 objects above a fractional level of 0.2%. We identify ten sources with strong fractional linear polarization and low Faraday rotation measure that could be suitable for wide-band absolute polarization calibration. We detect significant circular polarization from 24% of the sample down to a detection level of 0.07%. Circularly polarized emission is seen only for flat spectrum sources α > −0.5. We compare our polarized intensities and Faraday synthesis results to data from the NVSS at 1400 MHz and the ATCA SPASS survey at 2300 MHz. NVSS data exist for 54 of our sources and SPASS data for 20 sources. The percent polarization and rotation measures from both surveys agree well with our results. The residual instrumental linear polarization for these observations is measured at 0.16%, and the residual instrumental circular polarization is measured at 0.05%. These levels may reflect either instabilities in the relative bandpass between the two polarization channels with either time or antenna orientation, or atmospheric/ionospheric variations with pointing direction. Tracking of the hourly gain solutions on J0408-6545 after transfer of the primary gain solutions suggests a deterioration of the gain stability by a factor of several starting about 2 hr after sunrise. This suggests that observing during the nighttime could dramatically improve the precision of polarization calibration.
MeerKAT 对南方校准源的偏振勘测
我们报告了对 98 个 MeerKAT 校准源的全斯托克斯 L 波段观测结果。在 71 个分数水平超过 0.2% 的天体中检测到线性偏振。我们确定了 10 个具有较强分数线性偏振和较低法拉第旋转测量值的光源,它们可能适合于宽波段绝对偏振校准。我们从 24% 的样本中检测到了明显的圆极化,检测水平低至 0.07%。只有在平坦光谱源 α > -0.5时才会出现圆偏振发射。我们将偏振强度和法拉第合成结果与 1400 MHz 的 NVSS 数据和 2300 MHz 的 ATCA SPASS 巡天数据进行了比较。NVSS 数据包括 54 个源,SPASS 数据包括 20 个源。这两项巡天的偏振和旋转测量结果与我们的结果非常吻合。这些观测的残余仪器线偏振测量值为 0.16%,残余仪器圆偏振测量值为 0.05%。这些水平可能反映了两个极化信道之间的相对带通随时间或天线方向的不稳定性,或大气层/电离层随指向方向的变化。对 J0408-6545 的每小时增益解进行跟踪后发现,从日出后约 2 小时开始,增益稳定性下降了几倍。这表明夜间观测可以显著提高偏振校准的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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