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Interferometer for testing in vibration environments

机译:在振动环境中测试的干涉仪

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Temporal phase shifting interferometers require a stable environment during the data acquisition, so that well controlled phase steps can be introduced between successively acquired interferograms. In contrast, single-frame interferometers need to acquire only one interferogram to provide a phase map with very good precision at high spatial resolution. Thus these interferometers are well suited for the interferometric testing of large optics with long radius of curvature for which vibration isolation is difficult, e.g. testing astronomical telescope mirrors in a test tower, or testing space optics inside a cryogenic vacuum chamber. This paper describes the Instantaneous Phase Interferometer (IPI) by ADE Phase Shift, together with measurement results at NASA. The IPI consists of a polarization Twyman-Green interferometer operating at 632.8nm, with single-frame phase acquisition based on a spatial carrier technique. The spatial carrier fringes are generated by introducing large amount of tilt between the test beam and the reference beam. The phase information of the optical surface under test is encoded in the straightness of the interference fringes, which can be detected in a single frame with spatial sampling of 1000x1000 pixels. Measurements taken at the NASA Marshall Space Flight Center in support of the characterization of developmental optics for the Next Generation Space Telescope are presented. Such tests consist of a mirror placed inside a cryogenic vacuum chamber, with the IPI placed outside the test chamber without any additional vibration isolation.
机译:时间相移干涉仪在数据采集过程中需要稳定的环境,因此可以在连续采集的干涉图之间引入可控的相位步进。相反,单帧干涉仪只需采集一张干涉图即可在高空间分辨率下以非常好的精度提供相位图。因此,这些干涉仪非常适合于具有长曲率半径的大型光学器件的干涉测量测试,对于这些光学器件而言,难以进行振动隔离(例如,振动)。在测试塔中测试天文望远镜镜,或在低温真空室内测试太空光学器件。本文介绍了通过ADE相移实现的瞬时相位干涉仪(IPI)以及NASA的测量结果。 IPI由工作在632.8nm的偏振Twyman-Green干涉仪组成,具有基于空间载波技术的单帧相位采集。通过在测试光束和参考光束之间引入大量的倾斜来生成空间载波条纹。被测光学表面的相位信息以干涉条纹的直线度编码,可以在单个帧中以1000x1000像素的空间采样检测到。介绍了在NASA马歇尔太空飞行中心进行的测量,以支持下一代太空望远镜的发展光学特性。此类测试由放置在低温真空室内的镜子组成,而IPI放置在测试室内的外部,没有任何额外的振动隔离。

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