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Calibration of spatially phase-shifted DSPI for measurement of large structures

机译:用于大型结构测量的空间相移DSPI的校准

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摘要

We present a method for the calibration of a spatially phase-shifted digital speckle pattern interferometer(SPS-DSPI), which was designed and built for the purpose of testing the James Webb space telescope (JWST) optical structures and related technology development structures. The need to measure dynamic deformations of large, diffuse structures to nanometer accuracy at cryogenic temperature is paramount in the characterization of a large diameter space and terrestrial based telescopes. The techniques described herein apply to any situation, in which high accuracy measurement of diffuse structures are required. The calibration of the instrument is done using a single-crystal silicon gauge. The gauge has four islands of different heights that change in a predictable manner as a function of temperature. The SPS-DSPI is used to measure the relative piston between the islands as the temperature of the gauge is changed. The measurement results are then compared with the theoretical changes in the height of the gauge islands. The maximum deviation of the measured rate of change of the relative piston in nm/K from the expected value is 3.3percent.
机译:我们提出了一种用于校准空间相移数字散斑图案干涉仪(SPS-DSPI)的方法,该方法的设计和建造目的是测试James Webb空间望远镜(JWST)光学结构和相关技术的开发结构。在大直径空间和地面望远镜的表征中,最重要的是需要在低温下测量大型,漫射结构的动态变形以达到纳米精度。本文描述的技术适用于需要高精度测量扩散结构的任何情况。使用单晶硅量规对仪器进行校准。该仪表具有四个不同高度的岛,这些岛以可预测的方式随温度变化。当仪表的温度改变时,SPS-DSPI用于测量岛之间的相对活塞。然后将测量结果与量规岛高度的理论变化进行比较。相对活塞的测量变化率(以nm / K为单位)与预期值的最大偏差为3.3%。

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