论文标题

21cm宇宙学望远镜的数字校准来源

A Digital Calibration Source for 21cm Cosmology Telescopes

论文作者

Bhopi, Kalyani, Tyndall, Will, Sanghavi, Pranav, Bandura, Kevin, Newburgh, Laura, Gallicchio, Jason

论文摘要

前景缓解对于使用红移的中性氢21厘米发射线靶向宇宙学的所有下一代无线电干涉仪至关重要。尝试去除这种前景排放的尝试导致了新的分析技术以及专门用于仪表梁的硬件的新开发项目并获得校准,包括稳定的信号注入到干涉阵列和基于无人机映射的平台中。文献中当前使用的无线电校准源是广泛的不一致来源,只能被检测为过量功率,并且对相位信息没有直接敏感。在本文中,我们描述了一个数字无线电源,该数字无线电源使用全球定位卫星(GPS)派生的时间戳形成确定性信号,可以从空中平台广播。该源的副本可以在仪器相关器上本地部署,以便可以与本地副本相关联,从空中平台接收的信号,并且可以在每个干涉元件的幅度和相位中测量所得的相关性。我们定义了对这种源的要求,使用商业软件定义的无线电板描述此源的初始实现和验证,并使用商业板从天线范围测量中进行了光束映射切片。我们发现,商业委员会没有满足所有要求,因此我们还建议使用更复杂的芯片组的未来指示。

Foreground mitigation is critical to all next-generation radio interferometers that target cosmology using the redshifted neutral hydrogen 21 cm emission line. Attempts to remove this foreground emission have led to new analysis techniques as well as new developments in hardware specifically dedicated to instrument beam and gain calibration, including stabilized signal injection into the interferometric array and drone-based platforms for beam mapping. The radio calibration sources currently used in the literature are broad-band incoherent sources that can only be detected as excess power and with no direct sensitivity to phase information. In this paper, we describe a digital radio source which uses Global Positioning Satellite (GPS) derived time stamps to form a deterministic signal that can be broadcast from an aerial platform. A copy of this source can be deployed locally at the instrument correlator such that the received signal from the aerial platform can be correlated with the local copy, and the resulting correlation can be measured in both amplitude and phase for each interferometric element. We define the requirements for such a source, describe an initial implementation and verification of this source using commercial Software Defined Radio boards, and present beam map slices from antenna range measurements using the commercial boards. We found that the commercial board did not meet all requirements, so we also suggest future directions using a more sophisticated chipset.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源