论文标题
田莱碟探路者阵列:原型运输无线电干涉仪的设计,操作和性能
The Tianlai Dish Pathfinder Array: design, operation and performance of a prototype transit radio interferometer
论文作者
论文摘要
田莱碟探路者阵列是一种无线电干涉仪,旨在测试重新电位化宇宙中21厘米强度映射的技术,作为测量大型宇宙结构的一种手段。它在不断偏斜的情况下执行天空漂移扫描。我们根据大约$ \ sim 5 \%$ 6,200小时的天线观测值的分析来描述该仪器的设计,校准,噪声水平和稳定性,直到2019年10月。使用无人机的光束模式确定和亮源的传输非常吻合,并且与电磁模拟兼容。结合所有基准,我们在明亮的来源周围制作地图,并表明阵列的行为是预期的。几百个小时的观察结果已被用于研究阵列几何形状和指向缺陷以及仪器噪声行为。我们表明,对于大多数进料天线,系统温度低于80〜K,并且随着整合时间的预期,噪声波动均降低,至少最高几百秒。分析长整合的分析,从10晚的北天极观察结果,具有20-30〜MK的振幅产生可见性,与NCP无线电天空的预期信号相一致,$ <10 \,$ <10 \,$ MK Precision,以$ 1〜 \ MATHRM {MHz} {MHz} \ tims 1〜 \ times 1〜 \ Mathrm {mathrm {mathrm {mathrm {mathrm {mathrm mathrm {mathrm {mathnning} $ binnning。 HI-PASS过滤光谱以去除光光谱信号可产生与零信号一致的残余信号,$ 0.5 \ $ mk级别。
The Tianlai Dish Pathfinder Array is a radio interferometer designed to test techniques for 21~cm intensity mapping in the post-reionization universe as a means for measuring large-scale cosmic structure. It performs drift scans of the sky at constant declination. We describe the design, calibration, noise level, and stability of this instrument based on the analysis of about $\sim 5 \%$ of 6,200 hours of on-sky observations through October, 2019. Beam pattern determinations using drones and the transit of bright sources are in good agreement, and compatible with electromagnetic simulations. Combining all the baselines, we make maps around bright sources and show that the array behaves as expected. A few hundred hours of observations at different declinations have been used to study the array geometry and pointing imperfections, as well as the instrument noise behaviour. We show that the system temperature is below 80~K for most feed antennas, and that noise fluctuations decrease as expected with integration time, at least up to a few hundred seconds. Analysis of long integrations, from 10 nights of observations of the North Celestial Pole, yielded visibilities with amplitudes of 20-30~mK, consistent with the expected signal from the NCP radio sky with $<10\,$mK precision for $1 ~\mathrm{MHz} \times 1~ \mathrm{min}$ binning. Hi-pass filtering the spectra to remove smooth spectrum signal yields a residual consistent with zero signal at the $0.5\,$mK level.