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A large-format imager for the SkyMapper Survey Telescope

机译:用于SkyMapper Survey Telescope的大型成像仪

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The Research School of Astronomy and Astrophysics (RSAA) of the Australian National University (ANU) at Mt Stromlo Observatory is developing a wide-field Cassegrain Imager for the new 1.3m SkyMapper Survey Telescope under construction for Siding Spring Observatory, NSW, Australia. The Imager features a fast-readout, low-noise 268 Million pixel CCD mosaic that provides a 5.7 square degree field of view. Given the close relative sizes of the telescope and Imager, the work is proceeding in close collaboration with the telescope's manufacturer, Electro Optics Systems Pty Ltd (Canberra, Australia). The design of the SkyMapper Imager focal plane is based on E2V (Chelmsford, UK) deep depletion CCDs. These devices have 2048 x 4096 15 micron pixels, and provide a 91% filling factor in our mosaic configuration of 4 x 8 chips. In addition, the devices have excellent quantum efficiency from 300nm-950nm, near perfect cosmetics, and low-read noise, making them well suited to the all-sky ultraviolet through near-IR Southern Sky Survey to be conducted by the telescope. The array will be controlled using modified versions of the new IOTA controllers being developed for Pan-STARRS by Onaka and Tonry et al. These controllers provide a cost effective, low-volume, high speed solution for our detector read-out requirements. The system will have an integrated 6-filter exchanger, and Shack-Hartmann optics, and will be cooled by closed-cycle helium coolers. This paper will present the specifications, and opto-mechanical and detector control design of the SkyMapper Imager, including the test results of the detector characterisation and manufacturing progress.
机译:澳大利亚国立大学(ANU)的天文学和天体物理学(RSAA)研究学院在MT Stromlo Nementalatory正在开发一个广泛的Cassegrain成像仪,用于新的1.3M的斯内普勘察望远镜,为澳大利亚新南威尔士州德国南威尔士州德国南威尔士州德国。该成像器具有快速读数,低噪声26800万像素CCD MOSAIC,提供了5.7平方度的视野。鉴于望远镜和成像仪的紧密相对尺寸,这项工作正在与望远镜制造商,电光系统Pty Ltd(澳大利亚堪培拉)密切合作。 Skyapper Imager焦点平面的设计基于E2V(Chelmsford,UK)深耗尽CCD。这些器件具有2048 x 4096 15微米像素,并提供了4×8芯片的马赛克配置中的91%灌装系数。此外,该器件具有优异的量子效率,从300nm-950nm,近乎完美的化妆品和低读取噪音,使它们适合通过近红外南部天空调查的全天紫外线进行望远镜。将使用由Onaka和Tonry等人开发的泛斯塔尔开发的新IOTA控制器的修改版本来控制该阵列。这些控制器为我们的探测器读出要求提供了成本效益,低容量,高速的解决方案。该系统将具有集成的6滤水器交换器和棚屋 - Hartmann光学器件,并将通过闭环氦冷却器冷却。本文将介绍SkyMapper成像仪的规格,以及光机械和检测器控制设计,包括检测器表征和制造进度的测试结果。

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