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Optical Design of the LSST Camera

机译:LSST相机的光学设计

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摘要

The Large Synoptic Survey Telescope (LSST) uses a novel, three-mirror, modified Paul-Baker design, with an 8.4-meter primary mirror, a 3.4-m secondary, and a 5.0-m tertiary feeding a camera system that includes a set of broad-band filters and refractive corrector lenses to produce a flat focal plane with a field of view of 9.6 square degrees. Optical design of the camera lenses and filters is integrated with optical design of telescope mirrors to optimize performance, resulting in excellent image quality over the entire field from ultra-violet to near infra-red wavelengths. The LSST camera optics design consists of three refractive lenses with clear aperture diameters of 1.55 m, 1.10 m and 0.69 m and six interchangeable, broad-band, filters with clear aperture diameters of 0.75 m. We describe the methodology for fabricating, coating, mounting and testing these lenses and filters, and we present the results of detailed tolerance analyses, demonstrating that the camera optics will perform to the specifications required to meet their performance goals.
机译:大型天气观测望远镜(LSST)使用新颖的三反射镜修改后的Paul-Baker设计,具有8.4米的主镜,3.4 m的副镜和5.0 m的三级镜,可为包括一套摄影机的照相机系统宽带滤光镜和屈光矫正镜的组合,以产生一个平焦平面,其视场为9.6平方度。相机镜头和滤镜的光学设计与望远镜镜的光学设计集成在一起,以优化性能,从而在从紫外线到近红外波长的整个视场中提供出色的图像质量。 LSST相机光学设计包括三个折射透镜,其透明孔径分别为1.55 m,1.10 m和0.69 m,以及六个可互换的宽带滤光片,其透明孔径为0.75 m。我们描述了制造,涂覆,安装和测试这些镜头和滤光片的方法,并给出了详细的公差分析结果,表明相机光学系统将达到满足其性能目标所需的规格。

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