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Instantaneous Spatial Phase-stepping Methods for Phase-measuring Interferometry and Photoelasticity

机译:瞬时空间相位步进法测量相干和光弹性

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摘要

This paper demonstrates instantaneous phase-stepping and subsequent phase analysis methods for interferometry and two-dimensional photoelasticity. The camera that has a pixelated form-birefringent micro-retarder array acquires phase-stepped fringes in a single camera frame. Then, the distributions of Stokes parameters that represent the state of polarization are calculated from a single image. In the case of the polarization interferometer, the phase difference of the two orthogonally polarized light beam can be easily determined from the Stokes parameters. On the other hand, the phase distributions of the isochromatics and the isoclinics are obtained in the case of the photoelasticity. It is emphasized that this method is applicable to real-time inspection of optical elements as well as the study of the mechanics of time-dependent materials because multiple exposures are unnecessary for sufficient data acquisition in the completion of data analysis.
机译:本文演示了用于干涉测量和二维光弹性的瞬时相位步进和后续相位分析方法。具有像素化形式双折射微延迟器阵列的相机在单个相机帧中获取相位步进条纹。然后,从单个图像计算代表极化状态的斯托克斯参数的分布。在偏振干涉仪的情况下,可以从斯托克斯参数容易地确定两个正交偏振光束的相位差。另一方面,在光弹性的情况下,获得了等色相和等斜相的相位分布。需要强调的是,该方法适用于光学元件的实时检查以及时变材料的力学研究,因为在完成数据分析时,对于充分的数据采集来说,多次曝光是不必要的。

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