平方公里阵列的合成观测:向端到端管道的发展

IF 1.1 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS Journal of Astrophysics and Astronomy Pub Date : 2023-03-13 DOI:10.1007/s12036-022-09906-8
Aishrila Mazumder, Abhirup Datta, Mayuri Sathyanarayana RAO, Arnab Chakraborty, Saurabh Singh, Anshuman Tripathi, Madhurima Choudhury
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引用次数: 0

摘要

探测到来自宇宙黎明和再电离时代(EoR)的21厘米红移中性氢信号是现代观测宇宙学的最后前沿之一。固有的微弱信号使其容易受到几个来源的污染,如天体物理学前景和仪器系统。然而,最近取得的进展将使即将到来的平方公里阵列(SKA)的信号检测成为可能,包括统计和断层扫描。这篇综述描述了一个本土开发的端到端管道,模拟敏感的干涉观测。重点介绍了干涉仪对Hi检测的要求。在目前的形式下,它可以模拟现实点源前景和系统校准误差和位置误差对21厘米观测的影响。在标定误差和位置误差均为0.01%的测试用例下,验证了该管道的性能。它的性能在望远镜、前景和信号模型中都是一致的。在初始阶段,模拟管道的重点是提高采收率科学。但由于这是一个通用的干涉模拟管道,它将有助于整个SKA用户社区,无论科学目标如何。
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Synthetic observations with the Square Kilometre Array: Development towards an end-to-end pipeline

Detection of the redshifted 21-cm signal of neutral hydrogen from the cosmic dawn and the epoch of reionization (EoR) is one of the final frontiers of modern observational cosmology. The inherently faint signal makes it susceptible to contamination by several sources like astrophysical foregrounds and instrumental systematics. Nevertheless, developments achieved in the recent developments will combine to make signal detection possible with the upcoming Square Kilometer Array (SKA), both statistically and via tomography. This review describes an indigenously developed end-to-end pipeline that simulates sensitive interferometric observations. It mainly focuses on the requirements for Hi detection in interferometers. In its present form, it can mimic the effects of realistic point source foregrounds and systematics—calibration error and position error on 21-cm observations. The performance of the pipeline is demonstrated for test cases with 0.01% calibration error and position error. Its performance is consistent across telescope, foreground and signal models. The focus of the simulation pipeline during the initial stages was for EoR science. But since this is a general interferometric simulation pipeline, it will be helpful to the entire SKA user community, irrespective of the science goals.

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来源期刊
Journal of Astrophysics and Astronomy
Journal of Astrophysics and Astronomy 地学天文-天文与天体物理
CiteScore
1.80
自引率
9.10%
发文量
84
审稿时长
>12 weeks
期刊介绍: The journal publishes original research papers on all aspects of astrophysics and astronomy, including instrumentation, laboratory astrophysics, and cosmology. Critical reviews of topical fields are also published. Articles submitted as letters will be considered.
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