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The 12K×8K CCD mosaic camera for the Palomar Transient Factory

机译:帕洛玛瞬态工厂的12K×8K CCD马赛克相机

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The Palomar Transient Factory is an automated wide-field survey facility dedicated to identifying a wide range of transient phenomena. Typically, a new 7.5 square degree field will be acquired every 90 seconds with 66% observing efficiency, in g' band when the sky is dark, or in R band when the moon is up. An imaging camera with a 12K×8K mosaic of MIT/LL CCDs, acquired from CFHT, is being repackaged to fit in the prime focus mounting hub of the Palomar 48-inch Oschin Schmidt Telescope. We discuss how we have addressed the broad range of issues presented by this application: faster CCD readout to improve observing efficiency, a new cooling system to fit within the constrained space, a low impact shutter to maintain reliability at the fast observing cadence, a new filter exchange mechanism, and the field flattener needed to correct for focal plane curvature. The most critical issue was the tight focal plane alignment and co-planarity requirements created by the fast beam and coarse plate scale. We built an optical profilometer system to measure CCDs heights and tilts with 1 μm RMS accuracy.
机译:Palomar瞬态工厂是自动化的大范围测量设施,致力于识别各种瞬态现象。通常,每90秒将以66%的观测效率获取一个新的7.5平方度的新场,当天空黑暗时在g'波段,而当月亮升起时在R波段。从CFHT获得的具有MIT / LL CCD的12K×8K马赛克的成像相机将被重新包装,以适合Palomar 48英寸Oschin Schmidt望远镜的主焦点安装中心。我们讨论了如何解决此应用程序提出的广泛问题:更快的CCD读数以提高观察效率,在受限空间内安装的新冷却系统,低冲击百叶窗以在快速观察节奏下保持可靠性,新滤波器的交换机制,以及矫正焦平面曲率所需的场展平器。最关键的问题是快速光束和粗糙板刻度产生的紧密焦平面对准和共面要求。我们构建了一个光学轮廓仪系统,以1μmRMS精度测量CCD的高度和倾斜度。

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