High-speed imaging system to detect stellar occultations by Kuiper belt and Oort cloud objects

IF 1.7 3区 工程技术 Q2 ENGINEERING, AEROSPACE Journal of Astronomical Telescopes Instruments and Systems Pub Date : 2024-01-01 DOI:10.1117/1.jatis.10.1.016003
James Hitchcock, Richard H. Gomer
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Abstract

The existence of kilometer size objects in the Oort cloud has been conjectured but not observed as these objects are too small and too far away to be detected by reflected sunlight with current telescopes. However, these objects could be detected by serendipitous occultations of stars. We outline a pilot study for a planned occultation survey that will mount high frame-rate sCMOS cameras in the otherwise unused areas in the focal planes of large, ground-based telescopes. Because gigabytes of imaging data are produced every second, making storage of the imaging impractical for long-term observing campaigns, the image processing must be done in real time. We describe a data system that processes up to 330 frames/s of 3200×3200 images in real time and a procedure to analyze the recorded photometry for candidate occultation events by outer solar system objects. Although we did not detect any occultations, we describe successfully trialing our system taking continuous data on 7 nights of sCMOS observations of nearby open clusters with the 2.1 m telescope at McDonald Observatory, Texas.
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探测柯伊伯带和奥尔特云天体掩星的高速成像系统
人们猜测奥尔特云中存在千米大小的天体,但没有观测到,因为这些天体太小、太远,目前的望远镜无法通过反射的太阳光探测到。不过,这些天体可以通过偶然的恒星掩星现象探测到。我们将在大型地基望远镜焦平面的闲置区域安装高帧率 sCMOS 摄像机,为计划中的掩星观测进行试点研究。由于每秒都会产生千兆字节的成像数据,因此存储成像数据对于长期观测活动来说是不切实际的,因此必须实时进行图像处理。我们介绍了一个实时处理 3200×3200 像素、速度高达 330 帧/秒的数据系统,以及一个分析所记录的外太阳系天体候选掩星事件光度的程序。虽然我们没有探测到任何掩星现象,但我们描述了我们的系统在德克萨斯州麦克唐纳天文台的 2.1 米望远镜对附近疏散星团进行 7 晚 sCMOS 观测时连续获取数据的成功试验。
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来源期刊
CiteScore
4.40
自引率
13.00%
发文量
119
期刊介绍: The Journal of Astronomical Telescopes, Instruments, and Systems publishes peer-reviewed papers reporting on original research in the development, testing, and application of telescopes, instrumentation, techniques, and systems for ground- and space-based astronomy.
期刊最新文献
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