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A simple, dual knife-edge test for phasing segmented aperture space telescopes

机译:一种简单的双刀刃测试,用于逐步分割孔径空间望远镜

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Over the past twenty-five years, ground based telescopes have made the leap from single, continuous primary mirrors to segmented apertures. This transition was motivated by the cost and complexity of large, monolithic optical surfaces. Space telescopes, driven by the same practicalities, are beginning to make this same transition. The challenge is to accurately phase these apertures such that they behave as a single monolithic mirror. Here we introduce a new method for this co-alignment based upon a classic knife-edge technique. The advantage of this method is: 1) it has a very large dynamic range, 2) it works with broadband light and is therefore very photon efficient, 3) it requires only a single mechanism and single sensor, 4) it works equally well with sparsely filled apertures as well as filled apertures, 5) it phases all the segments simultaneously, 6) requires no additional segment motion diversity for sensing. In this paper, we review the knife-edge method, provide context for the segment phasing problem, perform numerical simulations of the sensor, and provide preliminary laboratory confirmation of this method with a demonstration with a segmented deformable mirror.
机译:在过去的二十五年中,基于地面的望远镜已经从单一,连续的主镜子到分段孔的跳跃。这种转变是通过大型整体光学表面的成本和复杂性的激励。由相同的实用驱动的空间望远镜开始造成同样的转换。挑战是准确地相位这些孔,使得它们表现为单一整体镜。在这里,我们基于经典的刀刃技术介绍了这种协调的新方法。这种方法的优点是:1)它具有非常大的动态范围,2)它适用于宽带光,因此非常光子有效,3)它只需要一个机制和单个传感器,4)它同样适用稀疏填充的孔和填充孔径,5)它同时相位阶段,6)不需要额外的段运动分集来进行传感。在本文中,我们审查了刀边的方法,为段相位问题提供了背景,对传感器进行数值模拟,并提供该方法的初步实验室确认,具有分段可变形镜的演示。

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