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The 64 Mpixel wide field imager for the Wendelstein2m telescope:design and calibration

机译:用于Wendelstein2m望远镜的64 Mpixel宽视场成像仪:设计和校准

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The Wendelstein Observatory of Ludwig Maximilians University of Munich has recently been upgraded with a modern 2m robotic telescope. One Nasmyth port of the telescope has been equipped with a wide-field corrector which preserves the excellent image quality (< 0.8" median seeing) of the site (Hopp et al. 2008) over a field of view of 0.7 degrees diameter. The available field is imaged by an optical imager (WWFI, the Wendelstein Wide Field Imager) built around a customized 2 × 2 mosaic of 4k × 4k 15 μm e2v CCDs from Spectral Instruments. This paper provides an overview of the design and the WWFI's performance. We summarize the system mechanics (including a structural analysis), the electronics(and its electromagnetic interference (EMI) protection) and the control software. We discuss in detail detector system parameters, i.e. gain and readout noise, quantum efficiency as well as charge transfer efficiency (CTE) and persistent charges. First on sky tests yield overall good predictability of system throughput based on lab measurements.
机译:慕尼黑路德维希·马克西米利安斯大学温德尔斯坦天文台最近升级为现代2m机器人望远镜。望远镜的纳斯密斯(Nasmyth)端口已配备了宽视场校正器,该校正器在直径为0.7度的视场中可保留该位置的出色图像质量(Hopp等人,2008年)(Hopp等,2008)。光学成像仪(WWFI,Wendelstein宽视场成像仪)对场进行成像,该成像仪围绕Spectral Instruments定制的2k x 2 k 2马赛克的4k x 4k 15μme2v CCD成像,本文概述了该设计和WWFI的性能。总结了系统力学(包括结构分析),电子学(及其电磁干扰(EMI)保护)和控制软件,并详细讨论了检测器系统参数,即增益和读出噪声,量子效率以及电荷转移效率(CTE)和持续收费。首先,根据实验室测量,在空中进行测试可以总体上很好地预测系统吞吐量。

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