论文标题

Hirax实验的天线表征

Antenna characterization for the HIRAX experiment

论文作者

Kuhn, Emily R., Saliwanchik, Benjamin R. B., Bandura, Kevin, Bianco, Michele, Chiang, H. Cynthia, Crichton, Devin, Deng, Meiling, Gaddam, Sindhu, Gerodias, Kit, Gumba, Austin, Harris, Maile, Moodley, Kavilan, Mugundhan, V., Newburgh, Laura, Peterson, Jeffrey, Pieters, Elizabeth, Polish, Anna R., Refregier, Alexandre, Sampath, Ajith, Santos, Mario G., Sengate, Onkabetse, Sievers, Jonathan, Smith, Ema, Tyndall, Will, Walters, Anthony, Weltman, Amanda, Wulf, Dallas

论文摘要

氢强度和实时分析实验(HIRAX)旨在通过高红移($ 0.8 <z <2.5 $)的大规模结构的测量来改善对状态的暗能量方程的约束,同时用作最先进的快速无线电爆发检测器。明亮的银河前景污染了400--800〜MHz HIRAX频带,因此实现科学目标将需要精确的仪器表征。在本文中,我们描述了HIRAX天线的表征,重点是天线束和天线噪声温度的测量。 当前的HIRAX天线设计的束测量是在呼吸室中进行的,并与模拟进行了比较。我们报告了测量技术和结果,这些技术和结果以$ν<$ 650MHz的价格找到了宽阔而对称的天线束,以及升高的交叉极化水平和梁不对称,价格为$ν> $ 700mHz。在耶鲁大学建造的自定义设备中,进行了HIRAX进料的噪声温度测量。在该系统中,相同的负载,一种低温,另一种在室温下进行进行差异(Y因子)测量,从中推断系统的噪声。已经使用该系统进行了几个测量集,涉及钟源以及四个HIRAX活跃饲料。这些测量值给出了Hirax Feed的第一个噪声温度测量值,显示出$ \ sim $ 60K的噪声温度(相对于30K目标),具有40k峰值峰值频率依赖性特征,并提供了进料可重复性的首次演示。这两个发现都为当前和未来的饲料设计提供了信息。

The Hydrogen Intensity and Real-time Analysis eXperiment (HIRAX) aims to improve constraints on the dark energy equation of state through measurements of large-scale structure at high redshift ($0.8<z<2.5$), while serving as a state-of-the-art fast radio burst detector. Bright galactic foregrounds contaminate the 400--800~MHz HIRAX frequency band, so meeting the science goals will require precise instrument characterization. In this paper we describe characterization of the HIRAX antenna, focusing on measurements of the antenna beam and antenna noise temperature. Beam measurements of the current HIRAX antenna design were performed in an anechoic chamber and compared to simulations. We report measurement techniques and results, which find a broad and symmetric antenna beam for $ν<$650MHz, and elevated cross-polarization levels and beam asymmetries for $ν>$700MHz. Noise temperature measurements of the HIRAX feeds were performed in a custom apparatus built at Yale. In this system, identical loads, one cryogenic and the other at room temperature, are used to take a differential (Y-factor) measurement from which the noise of the system is inferred. Several measurement sets have been conducted using the system, involving CHIME feeds as well as four of the HIRAX active feeds. These measurements give the first noise temperature measurements of the HIRAX feed, revealing a $\sim$60K noise temperature (relative to 30K target) with 40K peak- to-peak frequency-dependent features, and provide the first demonstration of feed repeatability. Both findings inform current and future feed designs.

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