Variable shearing holography with applications to phase imaging and metrology

P. Shanmugam, A. Light, A. Turley, K. Falaggis
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引用次数: 6

Abstract

We report variable shear interferometers employing liquid-crystal-based geometric-phase (GP) gratings. Conventional grating-based shear interferometers require two lateral shifts of the gratings to enable phase-shifting capabilities in x- and y- direction and two axial shifts of the gratings to adjust the shear amount in x- and y-direction, i.e., these systems need control of four axes mechanically. Here we show that the GP gratings combined with a pixelated polarization camera give instantaneous-phase shifting so that no mechanical movement is necessary to obtain phase shifts. Furthermore, we show that a single fixed shear with a rotational shear axis provides a more robust selection of shears while requiring the control of only one mechanical axis. We verify this statement using spatial domain and frequency domain criteria. We further show that the resolution of the reconstructed wavefield depends not only on the numerical aperture of the imaging system, the pixel size of the detector, or the spatial coherence of the source but also on the ability to determine the shear amount accurately. To improve this, we report a methodology to accurately detect the shear amounts using the second derivative of the autocorrelation function of the measured holograms, which further relaxes the requirements on mechanical stability.
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可变剪切全息术及其在相位成像和计量中的应用
我们报告了采用基于液晶的几何相位(GP)光栅的可变剪切干涉仪。传统的基于光栅的剪切干涉仪需要光栅的两个横向位移来实现x和y方向的相移能力,光栅的两个轴向位移来调节x和y方向的剪切量,即这些系统需要机械地控制四个轴。在这里,我们表明GP光栅与像素化偏振相机相结合可以实现瞬时相移,因此无需机械运动即可获得相移。此外,我们表明,具有旋转剪切轴的单个固定剪切提供了更强大的剪切选择,同时只需要控制一个机械轴。我们用空间域和频域标准验证了这一说法。我们进一步表明,重建波场的分辨率不仅取决于成像系统的数值孔径、探测器的像素大小或源的空间相干性,还取决于准确确定剪切量的能力。为了改善这一点,我们报告了一种利用测量全息图的自相关函数的二阶导数来准确检测剪切量的方法,这进一步放宽了对机械稳定性的要求。
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CiteScore
10.90
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0.00%
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