论文标题

Sitara的系统设计和校准 - 全局21厘米短间距干涉仪原型

System design and calibration of SITARA -- a global 21 cm short spacing interferometer prototype

论文作者

Thekkeppattu, Jishnu N., McKinley, Benjamin, Trott, Cathryn M., Jones, Jake, Ung, Daniel C. X.

论文摘要

全局21-CM实验需要对测量系统进行精确精确的校准,以便将弱的21-CM信号与银河系和外层面的前景以及仪器系统分开。迄今为止,旨在进行此测量的实验集中在使用单元方法测量此信号上。但是,一种基于短基线的干涉仪的替代方法有望减轻与单个元素方法相关的一些困难,例如接收器噪声谱的精确建模。短间距干涉仪望远镜探测宇宙黎明和回离时期(SITARA)是部署在Murchison Radio-Astronomy天文台(MRO)的短间距干涉仪。它旨在是原型或测试床,以更好地了解短基线的干涉法,并开发执行观察和数据校准的工具。在本文中,我们提供了Sitara系统及其在MRO部署的描述,并讨论了为校准Sitara制定的策略。我们涉及在Sitara数据及其建模中看到的某些系统。我们发现Sitara对所有天空信号以及天线之间的不可忽略的噪声都具有敏感性。可以看出,耦合的接收器噪声具有光谱形状,与先前的工作中报道的理论计算广泛匹配。我们还发现,当考虑到相互耦合的效果的适当修改的天线辐射模式时,测量的数据将通过标准可见性方程式很好地建模。

Global 21-cm experiments require exquisitely precise calibration of the measurement systems in order to separate the weak 21-cm signal from Galactic and extragalactic foregrounds as well as instrumental systematics. Hitherto, experiments aiming to make this measurement have concentrated on measuring this signal using the single element approach. However, an alternative approach based on interferometers with short baselines is expected to alleviate some of the difficulties associated with a single element approach such as precision modelling of the receiver noise spectrum. Short spacing Interferometer Telescope probing cosmic dAwn and epoch of ReionisAtion (SITARA) is a short spacing interferometer deployed at the Murchison Radio-astronomy Observatory (MRO). It is intended to be a prototype or a test-bed to gain a better understanding of interferometry at short baselines, and develop tools to perform observations and data calibration. In this paper, we provide a description of the SITARA system and its deployment at the MRO, and discuss strategies developed to calibrate SITARA. We touch upon certain systematics seen in SITARA data and their modelling. We find that SITARA has sensitivity to all sky signals as well as non-negligible noise coupling between the antennas. It is seen that the coupled receiver noise has a spectral shape that broadly matches the theoretical calculations reported in prior works. We also find that when appropriately modified antenna radiation patterns taking into account the effects of mutual coupling are used, the measured data are well modelled by the standard visibility equation.

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