Arc-second alignment of International X-Ray Observatory mirror segments in a fixed structure

T. Evans, Kai-wing Chan, T. Saha
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引用次数: 6

Abstract

The optics for the International X-Ray Observatory (IXO) require alignment and integration of about fourteen thousand thin mirror segments to achieve the mission goal of 3.0 square meters of effective area at 1.25 keV with an angular resolution of five arc-seconds. These mirror segments are 0.4 mm thick, and 200 to 400 mm in size, which makes it hard to meet the strict angular resolution requirement of 5 arc-seconds for the telescope. This paper outlines the precise alignment, verification testing, and permanent bonding techniques developed at NASA's Goddard Space Flight Center (GSFC). These techniques are used to overcome the challenge of transferring thin mirror segments from a temporary mount to a fixed structure with arc-second alignment and minimal figure distortion. Recent advances in technology development in addition to the automation of several processes have produced significant results. Recent advances in the mirror fixture process known as the suspension mount has allowed for a mirror to be mounted to a fixture with minimal distortion. Once on the fixture, mirror segments have been aligned to around 5 arc-seconds which is halfway to the goal of 2.5 arc-seconds per mirror segment. This paper will highlight the recent advances in alignment, testing, and permanent bonding techniques as well as the results they have produced. 12
国际x射线天文台镜面在固定结构中的弧秒对准
国际x射线天文台(IXO)的光学系统需要对大约14000个薄反射镜片段进行校准和集成,以实现在1.25 keV下有效面积为3.0平方米,角分辨率为5弧秒的任务目标。这些镜段厚度为0.4毫米,尺寸为200至400毫米,很难满足望远镜严格的5角秒角分辨率要求。本文概述了美国宇航局戈达德太空飞行中心(GSFC)开发的精确对准、验证测试和永久粘合技术。这些技术用于克服将薄镜段从临时安装转移到具有弧秒对齐和最小图形失真的固定结构的挑战。技术发展的最新进展以及若干过程的自动化已经产生了重大成果。最近的进步,在镜子夹具过程中被称为悬挂安装允许镜子被安装到一个夹具与最小的失真。一旦在夹具上,镜段已经对齐到大约5弧秒,这是2.5弧秒每个镜段的目标的一半。本文将重点介绍在校准、测试和永久粘接技术方面的最新进展以及它们产生的结果。12
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