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Progress on the Active Alignment System for the IXO Mirrors

机译:IXO镜主动对准系统的进展

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The next large x-ray astrophysics mission launched will likely include soft x-ray spectroscopy as a primary capability. A requirement to fulfill the science goals of such a mission is a large-area x-ray telescope focusing sufficient x-ray flux to perform high-resolution spectroscopy with reasonable observing times. The IXO soft x-ray telescope effort in the US is focused on a tightly nested, thin glass, segmented mirror design. Fabrication of the glass segments with the required surface accuracy is a fundamental challenge; equally challenging will be the alignment of the ~7000 secondary mirror segments with their corresponding primary mirrors, and co-alignment of the mirror pairs. We have developed a system to perform this alignment using a combination of a coordinate measuring machine (CMM) and a double-pass Hartmann test alignment system. We discuss the technique, its ability to correct low-order mirror errors, and results of a recent pair alignment including progress toward the required alignment accuracy of < 2 arcseconds. We then look forward toward its scalability to the task of building the IXO telescope.
机译:下一个发射的大型X射线天体物理学任务可能会将软X射线光谱学作为主要功能。实现这种任务的科学目标的要求是,一个大面积的X射线望远镜聚焦足够的X射线通量,以在合理的观察时间下执行高分辨率光谱。在美国,IXO软X射线望远镜的工作重点是紧密嵌套的薄玻璃分段镜设计。制造具有所需表面精度的玻璃段是一项根本性的挑战。同样具有挑战性的是〜7000个辅助反射镜段与其对应的主反射镜的对准以及反射镜对的共同对准。我们已经开发了一种使用坐标测量机(CMM)和双通道Hartmann测试对准系统的组合来执行此对准的系统。我们讨论了该技术,其校正低阶镜面误差的能力以及最近的线对对准的结果,包括朝着小于2弧秒的对准精度迈进的过程。然后,我们期待其可扩展性可用于构建IXO望远镜。

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