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Astrophysical Research Consortium Telescope Imaging Camera (ARCTIC) Instrument for the Apache Point Observatory 3.5m Telescope

机译:阿帕奇点天文台3.5m望远镜的天体研究联盟望远镜成像相机(ARCTIC)仪器

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The Astrophysical Research Consortium Telescope Imaging Camera, ARCTIC, is a new optical imaging camera now in use at the Astrophysical Research Consortium (ARC) 3.5m telescope at Apache Point Observatory (APO). As a facility instrument, the design criteria broadly encompassed many current and future science opportunities, and the components were built for quick repair or replacement, to minimize down-time. Examples include a quick change shutter, filter drive components accessible from the exterior and redundant amplifiers on the detector. The detector is a Semiconductor Technology Associates (STA) device with several key properties (e.g. high quantum efficiency, low read-noise, quick readout, minimal fringing, operational bandpass 350-950nm). Focal reducing optics (f/10.3 to f/8.0) were built to control aberrations over a 7.8'×7.8' field, with a plate scale of 0.11" per 0.15 micron pixel. The instrument body and dewar were designed to be simple and robust with only two components to the structure forward of the dewar, which in turn has minimal feedthroughs and permeation areas and holds a vacuum <10~(-8) Torr. A custom shutter was also designed, using pneumatics as the driving force. This device provides exceptional performance and reduces heat near the optical path. Measured performance is repeatable at the 2ms level and offers field uniformity to the same level of precision. The ARCTIC facility imager will provide excellent science capability with robust operation and minimal maintenance for the next decade or more at APO.
机译:Astrophysical研究联盟望远镜成像相机,北极,现在是Astrophysical研究联盟(ARC)3.5M望远镜在Apache Point Observatory(APO)的新的光学成像相机。作为设施仪器,设计标准广泛包含许多当前和未来的科学机会,组件建成了快速修复或更换,以最大限度地减少停机时间。示例包括快速更改快门,可从检测器上的外部和冗余放大器访问的过滤器驱动器组件。探测器是具有多个关键特性的半导体技术关联(STA)设备(例如,高量子效率,低读取噪声,快速读数,最小流动,操作带通350-950nm)。建立了焦点还原光学(F / 10.3至F / 8.0)以控制7.8'×7.8'场的像差,平板等级为0.11“每0.15微米像素。仪器机身和杜瓦尔被设计为简单且坚固仅具有两个组件到杜瓦尔的结构上,这又具有最小的馈通和渗透区域,并保存真空<10〜(-8)托。使用气动学作为驱动力设计了自定义快门。该设备提供卓越的性能并减少光路附近的热量。测量的性能在2ms水平上可重复,并提供相同的精度水平的现场均匀性。北极设施成像器将为未来十年的强大操作和最小的维护提供优秀的科学能力和更多在apo。

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