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VIRUS: status and performance of the massively-replicated fiber integral field spectrograph for the upgraded Hobby-Eberly Telescope

机译:VIRUS:升级后的Hobby-Eberly望远镜大规模复制的光纤积分场光谱仪的现状和性能

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The Visible Integral-field Replicable Unit Spectrograph (VIRUS) consists of 156 identical spectrographs (arrayed as 78 pairs, each with apair of spectrographs) fed by 35,000 fibers, each 1.5 arcsec diameter, at the focus of the upgraded 10 m Hobby-Eberly Telescope (HET). VIRUS has a fixed bandpass of 350-550 nm and resolving power R~750. The fibers are grouped into 78 integral field units, each with 448 fibers and 20 m average length. VIRUS is the first example of large-scale replication applied to optical astronomy and is capable of surveying large areas of sky, spectrally. The VIRUS concept offers significant savings of engineering effort and cost when compared to traditional instruments. The main motivator for VIRUS is to map the evolution of dark energy for the Hobby-Eberly Telescope Dark Energy Experiment (HETDEX), using 0.8M Lyman-alpha emitting galaxies as tracers. The VIRUS array has been undergoing staged deployment starting in late 2015. Currently, more than half of the array has been populated and the HETDEX survey started in 2017 December. It will provide a powerful new facility instrument for the HET, well suited to the survey niche of the telescope, and will open up large spectroscopic surveys of the emission line universe for the first time. We will review the current state of production, lessons learned in sustaining volume production, characterization, deployment, and commissioning of this massive instrument.
机译:可见光整场可复制单元光谱仪(VIRUS)由156幅相同的光谱仪(排列成78对,每对配有一对光谱仪),由35,000根光纤(每根直径为1.5弧秒)馈入,是升级后的10 m Hobby-Eberly望远镜的焦点(HET)。 VIRUS具有350-550 nm的固定带通,分辨力R〜750。光纤分为78个整体现场单元,每个单元有448根光纤,平均长度为20 m。 VIRUS是应用于光学天文学的大规模复制的第一个示例,它能够在光谱上测量大范围的天空。与传统仪器相比,VIRUS概念可显着节省工程工作量和成本。 VIRUS的主要动机是使用0.8M Lyman-alpha发射星系作为示踪剂,为Hobby-Eberly望远镜暗能量实验(HETDEX)绘制暗能量的演变图。从2015年末开始,VIRUS阵列已开始分阶段部署。目前,该阵列的一半以上已经安装完毕,HETDEX调查于2017年12月开始。它将为HET提供功能强大的新设施仪器,非常适合望远镜的研究领域,并将首次开放对发射线宇宙的大型光谱学调查。我们将回顾当前的生产状态,以及在维持这种大规模仪器的批量生产,表征,部署和调试方面的经验教训。

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