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Vector Near-Field Beam Scanner for the SMA

机译:SMA的矢量近场光束扫描仪

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摘要

Here we describe the principles behind the design, construction, and implementation of a vector near-field beam scanner for the antennas of the Submillimeter Array. The Submillimeter Array (SMA) is a radio interferometer array operating at frequencies ranging from 200 - 700 GHz at the summit of Maunakea in Hawaii. A set of 4 receivers cover the key atmospheric windows over which the SMA operates. Each receiver insert is equipped with an ambient optical insert, which is pre-aligned in the lab prior to installation at the summit. However, as a result of receiver upgrades and problems, some receiver inserts may no longer be matched to the original optics inserts. Since the SMA is used extensively in dual-receiver observations, such beam mis-alignments lead to a relative pointing error between a pair of receivers during the observation. In order to address this issue, we have designed a near-field beam scanner which can be used to map out the receiver beam of each antenna. The setup employs the existing radio references available in each antenna for the vector beam measurement. We have successfully used this scanner to improve the on-sky co-alignment of receiver beams. In this presentation, we will describe the system and operational aspect of this in-situ radio frequency alignment technique.
机译:在这里,我们描述了用于亚毫米波阵列天线的矢量近场波束扫描仪的设计,构造和实现的原理。亚毫米阵列(SMA)是一种无线电干涉仪阵列,在夏威夷的毛努阿卡(Maunakea)峰顶,工作频率为200-700 GHz。一组4个接收器覆盖了SMA运行所在的关键大气窗口。每个接收器插件都配备了一个环境光学插件,该插件在实验室中预先校准,然后再安装在山顶上。但是,由于接收器升级和问题,某些接收器插件可能不再与原始光学插件匹配。由于SMA在双接收器观测中被广泛使用,因此这种波束失准会导致观测期间一对接收器之间的相对指向误差。为了解决这个问题,我们设计了一个近场波束扫描器,可以用来绘制每个天线的接收器波束。该设置使用每个天线中可用的现有无线电参考来进行矢量波束测量。我们已经成功地使用了该扫描仪来改善接收器光束的空中共对准。在此演示文稿中,我们将描述这种原位射频对准技术的系统和操作方面。

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