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Aligning the ZTF Science Focal Plane Using Stellar Images

机译:使用恒星图像对齐ZTF科学焦平面

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The Zwicky Transient Facility (ZTF) is a next-generation, optical, synoptic survey that leverages the success of the Palomar Transient Factory (PTF). ZTF has a large science focal plane (SFP) that needs to be aligned such that all portions of the CCDs are simultaneously placed in focus to optimize the survey's efficiency. The SFP consists of 16 large, wafer-scale science CCDs, which are mosaicked to achieve 47deg~2 field of view. The SFP is aligned by repositioning each CCD based on the measured height map, which is a map of the camera's z position at which each portion of the CCD is in focus. This height map is measured using on-sky stellar images in order to recreate the optical path that will be used throughout the survey. We present our technique for placing the SFP in focus, which includes two different methods to measure the height map of the SFP. The first method measures the height at which a star is in focus by fitting a parabola to each star's photometric width as the star is moved in and out of focus. The second method measures the height by decomposing a defocused star into its image moments. We will discuss the strengths and limitations of each method and their outputs. By repositioning the CCDs, we were able to reduce the standard deviation of the height map from 33 to 14 microns, which improved the survey's speed by ~ 81%.
机译:Zwicky瞬态设施(ZTF)是利用Palomar瞬态工厂(PTF)的成功进行的下一代光学天气概要调查。 ZTF具有大型科学焦平面(SFP),需要对其进行对齐,以便同时将CCD的所有部分都置于焦点上,以优化调查效率。 SFP由16个大型晶圆级科学CCD组成,这些CCD镶嵌在一起以实现47deg〜2的视野。通过根据测得的高度图重新放置每个CCD来对齐SFP,该高度图是相机z位置的图,CCD的每个部分都在该位置聚焦。此高度图是使用天空中的恒星图像进行测量的,以便重新创建将在整个测量过程中使用的光路。我们介绍了将SFP聚焦的技术,其中包括两种不同的方法来测量SFP的高度图。第一种方法是通过在抛入和移出焦点时将抛物线拟合到每颗恒星的光度宽度来测量恒星的高度。第二种方法是通过将散焦的恒星分解成影像矩来测量高度。我们将讨论每种方法的优势和局限性以及它们的输出。通过重新定位CCD,我们能够将高度图的标准偏差从33微米减小到14微米,从而使测量速度提高了约81%。

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