Low-cost, Low-loss, Ultra-wideband Compact Feed for Interferometric Radio Telescopes

IF 1.5 Q3 ASTRONOMY & ASTROPHYSICS Journal of Astronomical Instrumentation Pub Date : 2022-10-14 DOI:10.1142/s2251171723500083
Vincent MacKay, Mark Lai, P. Shmerko, D. Wulf, L. Belostotski, K. Vanderlinde
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Abstract

We have developed, built, and tested a new feed design for interferometric radio telescopes with"large-$N$, small-$D$"designs. Those arrays require low-cost and low-complexity feeds for mass production on reasonable timescales and budgets, and also require those feeds to be compact to minimize obstruction of the dishes, along with having ultra wide bands of operation for most current and future science goals. The feed presented in this paper modifies the exponentially tapered slot antenna (Vivaldi) and quad-ridged flared horn antenna designs by having an oversized backshort, a novel method of maintaining a small size that is well-suited for deeper dishes ($f/D\leq 0.25$). It is made of laser cut aluminum and printed circuit boards, such that it is inexpensive ($\lesssim$ 75 USD per feed in large-scale production) and quick to build; it has a 5:1 frequency ratio, and its size is approximately a third of its longest operating wavelength. We present the science and engineering constraints that went into design decisions, the development and optimization process, and the simulated performance. A version of this feed design was optimized and built for the Canadian Hydrogen Observatory and Radio-transient Detector (CHORD) prototypes. When simulated on CHORD's very deep dishes ($f/D=0.21$) and with CHORD's custom first stage amplifiers, the on-sky system temperature $T_\mathrm{sys}$ of the complete receiving system from dish to digitizer remains below 30 K over most of the 0.3-1.5 GHz band, and maintains an aperture efficiency $\eta_\mathrm{A}$ between 0.4 and 0.6. The entire receiving chain operates at ambient temperature. The feed is designed to slightly under-illuminate the CHORD dishes, in order to minimize coupling between array elements and spillover.
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用于干涉射电望远镜的低成本,低损耗,超宽带紧凑型馈电
我们开发、建造并测试了一种新的干涉式射电望远镜馈源设计,其设计为“大-$N$,小-$D$”。这些阵列需要低成本、低复杂性的饲料,以便在合理的时间和预算内大规模生产,还需要这些饲料紧凑,以最大限度地减少对餐具的阻碍,同时为大多数当前和未来的科学目标提供超宽的操作范围。本文提出的馈源通过具有超大后短来修改指数锥形缝隙天线(Vivaldi)和四脊喇叭天线的设计,这是一种保持小尺寸的新方法,非常适合更深的碟形天线($f/D\leq0.25$)。它由激光切割的铝和印刷电路板制成,因此它价格低廉(在大规模生产中,每只饲料75美元),而且建造速度快;它的频率比为5:1,其大小大约是其最长工作波长的三分之一。我们介绍了设计决策、开发和优化过程以及模拟性能中的科学和工程约束。该进料设计的一个版本是为加拿大氢观测站和无线电瞬态探测器(CHORD)原型优化和构建的。当在CHORD的甚深碟形天线($f/D=0.21$)和CHORD的定制第一级放大器上模拟时,从碟形天线到数字化仪的整个接收系统的天空系统温度$T_\mathrm{sys}$在0.3-1.5GHz频带的大部分时间内保持在30K以下,并保持孔径效率$\eta_\mathrm{A}$在0.4和0.6之间。整个接收链在环境温度下运行。进料被设计为稍微低于CHORD盘的照明,以最大限度地减少阵列元件和溢出之间的耦合。
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来源期刊
Journal of Astronomical Instrumentation
Journal of Astronomical Instrumentation ASTRONOMY & ASTROPHYSICS-
CiteScore
2.30
自引率
7.70%
发文量
19
期刊介绍: The Journal of Astronomical Instrumentation (JAI) publishes papers describing instruments and components being proposed, developed, under construction and in use. JAI also publishes papers that describe facility operations, lessons learned in design, construction, and operation, algorithms and their implementations, and techniques, including calibration, that are fundamental elements of instrumentation. The journal focuses on astronomical instrumentation topics in all wavebands (Radio to Gamma-Ray) and includes the disciplines of Heliophysics, Space Weather, Lunar and Planetary Science, Exoplanet Exploration, and Astroparticle Observation (cosmic rays, cosmic neutrinos, etc.). Concepts, designs, components, algorithms, integrated systems, operations, data archiving techniques and lessons learned applicable but not limited to the following platforms are pertinent to this journal. Example topics are listed below each platform, and it is recognized that many of these topics are relevant to multiple platforms. Relevant platforms include: Ground-based observatories[...] Stratospheric aircraft[...] Balloons and suborbital rockets[...] Space-based observatories and systems[...] Landers and rovers, and other planetary-based instrument concepts[...]
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