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首页> 外文期刊>The Astrophysical journal >ROTATION MEASURE SYNTHESIS OF GALACTIC POLARIZED EMISSION WITH THE DRAO 26-m TELESCOPE
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ROTATION MEASURE SYNTHESIS OF GALACTIC POLARIZED EMISSION WITH THE DRAO 26-m TELESCOPE

机译:DRAO 26米望远镜的银河系极化辐射的旋转测量合成

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Radio polarimetry at decimeter wavelengths is the principal source of information on the Galactic magnetic field. The diffuse polarized emission is strongly influenced by Faraday rotation in the magneto-ionic medium and rotation measure (RM) is the prime quantity of interest, implying that all Stokes parameters must be measured over wide frequency bands with many frequency channels. The Dominion Radio Astrophysical Observatory (DRAO) 26 m Telescope has been equipped with a wide-band feed, a polarization transducer to deliver both hands of circular polarization, and a receiver, all operating from 1277 to 1762?MHz. Half-power beamwidth is between 40 and 30?arcmin. A digital Field-Programmable Gate Array spectrometer, based on commercially available components, produces all Stokes parameters in 2048 frequency channels over a 485-MHz bandwidth. Signals are digitized to 8 bits and a Fast Fourier Transform is applied to each data stream. Stokes parameters are then generated in each frequency channel. This instrument is in use at DRAO for a Northern sky polarization survey. Observations consist of scans up and down the Meridian at a drive rate of ~09 per minute to give complete coverage of the sky between declinations –30° and 90°. This paper presents a complete description of the receiver and data acquisition system. Only a small fraction of the frequency band of operation is allocated for radio astronomy, and about 20% of the data are lost to interference. The first 8% of data from the survey are used for a proof-of-concept study, which has led to the first application of RM-Synthesis to the diffuse Galactic emission obtained with a single-antenna telescope. We find RM values for the diffuse emission as high as ~±100?rad?m–2, much higher than recorded in earlier work.
机译:分米波长的无线电极化法是有关银河磁场的主要信息来源。扩散极化发射受到磁离子介质中法拉第旋转的强烈影响,旋转量度(RM)是主要的关注量,这意味着必须在具有许多频道的宽频带上测量所有斯托克斯参数。 Dominion射电天文台(DRAO)26 m望远镜配备了宽带馈电,提供圆极化的双手的极化换能器,以及工作在1277至1762?MHz的接收器。半功率波束宽度在40至30?arcmin之间。基于可商购组件的数字现场可编程门阵列光谱仪可在485 MHz带宽上的2048个频道中生成所有Stokes参数。信号被数字化为8位,并且快速傅立叶变换应用于每个数据流。然后在每个频道中生成斯托克斯参数。 DRAO正在使用该仪器进行北方天空极化测量。观测包括以每分钟〜09的驱动速率上下扫描子午线,以完全覆盖30°和90°偏角之间的天空。本文介绍了接收机和数据采集系统的完整说明。工作频段的一小部分被分配给射电天文学,大约20%的数据丢失给干扰。来自调查的前8%的数据用于概念验证研究,这导致RM合成首次应用于单天线望远镜获得的漫射银河发射。我们发现漫射发射的RM值高达〜±100?rad?m-2,远高于早期工作中记录的值。

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