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Optical metrology for the segmented optics on the Constellation-X Spectroscopy X-ray telescope

机译:Constellation-X光谱X射线望远镜上分段光学的光学计量

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We present the metrology requirements and metrology implementation necessary to optically characterize the reflector technology for the Constellation-X (C-X) spectroscopy x-ray telescope (SXT). This segmented, 1.6m diameter highly nested telescope presents many metrology and alignment challenges. In particular, these mirrors have a stringent imaging error budget as compared to their intrinsic stiffness. The low stiffness is seen to be implied by the required effective area and the required weight. The low mirror stiffness has implications for the metrology that can he used. A variety of contact and non-contact optical profiling and interferometric methods are combined to test the formed glass substrates before replication and the replicated reflector segments. The reflectors are tested both stand-alone and in-situ in an alignment tower. Some of these methods have not been used on prior x-ray telescopes and some are feasible only because of the segmented approach used on the SXT. Methods to be discussed include high precision coordinate measurement machines using very low force or optical probes, axial interferometric profiling, azimuthal circularity profiling, and use of advanced null optics such as conical computer generated hologram (CGHs).
机译:我们介绍了光学要求,以光学表征Constellation-X(C-X)光谱X射线望远镜(SXT)的反射器技术所需的计量要求和计量实施。这款分段式,直径1.6m的高度嵌套望远镜带来了许多计量和对准挑战。特别是,与它们的固有刚度相比,这些反射镜具有严格的成像误差预算。所需的有效面积和所需的重量暗示了低刚度。较低的镜面刚度会对他可以使用的计量产生影响。结合使用各种接触式和非接触式光学轮廓分析和干涉测量方法,以在复制之前以及复制的反射镜段上测试形成的玻璃基板。反射器在对准塔中进行了独立测试和现场测试。其中一些方法尚未在现有的X射线望远镜上使用,而某些方法仅由于在SXT上使用分段方法而可行。讨论的方法包括使用非常低的力或光学探针的高精度坐标测量机,轴向干涉轮廓分析,方位圆度轮廓分析以及先进的空光学器件,例如锥形计算机生成的全息图(CGH)。

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