论文标题
为微波望远镜建模地面拾音器
Modelling ground pickup for microwave telescopes
论文作者
论文摘要
微波望远镜需要不断增加对实验系统学的控制,以使宇宙微波背景(CMB)达到精确水平。地面和气球传播实验的一个重要系统是地面拾音器,当主梁扫描天空时,横梁侧侧检测地面的热发射。这会在实验时间播放中产生扫描同步噪声,这在不删除天空中的某些信号的情况下很难过滤。因此,拾取的有效建模可以帮助指导实验和分析管道的设计。在这项工作中,我们提出了BeamConv算法的扩展名,该扩展使我们能够同时从光束卷入的天空和地面映射中生成时间订购的数据(TOD)。我们为地面实验和连接到平流层球囊的望远镜模拟地面拾音器。通过重新预测地球微波发射的卫星图获得了气球实验的地面模板。
Microwave telescopes require an ever-increasing control of experimental systematics in their quest to measure the Cosmic Microwave Background (CMB) to exquisite levels of precision. One important systematic for ground and balloon-borne experiments is ground pickup, where beam sidelobes detect the thermal emission of the much warmer ground while the main beam is scanning the sky. This generates scan-synchronous noise in experiment timestreams, which is difficult to filter out without also deleting some of the signal from the sky. Therefore, efficient modelling of pickup can help guide the design of experiments and of analysis pipelines. In this work, we present an extension to the beamconv algorithm that enables us to generate time-ordered data (TOD) from beam-convolved sky and ground maps simultaneously. We simulate ground pickup for both a ground-based experiment and a telescope attached to a stratospheric balloon. Ground templates for the balloon experiment are obtained by re-projecting satellite maps of the Earth's microwave emission.