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Parallel two-step phase-shifting digital holography

机译:并行两步相移数字全息术

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We propose a parallel two-step phase-shifting digital holography technique capable of instantaneous measurement of three-dimensional objects, with a view toward measurement of dynamically moving objects. The technique is based on phase-shifting interferometry. The proposed technique carries out the two-step phase-shifting method at one time and can be optically implemented by using a phase-shifting array device located in the reference beam. The array device has a periodic two-step phase distribution, and its configuration is simplified compared with that required for three-step and four-step parallel phase-shifting digital holographies. Therefore the optical system of the proposed technique is more suitable for the realization of a parallel phase-shifting digital holography system. We conduct both a numerical simulation and a preliminary experiment in the proposed technique. The results of the simulation and the experiment agree well with those of sequential phase-shifting digital holography, and results are superior to those obtained by conventional digital holography using the Fresnel transform alone. Thus the effectiveness of the proposed technique is verified.
机译:我们提出了一种并行的两步相移数字全息技术,该技术能够即时测量三维物体,以期对动态移动物体进行测量。该技术基于相移干涉术。所提出的技术一次执行两步相移方法,并且可以通过使用位于参考光束中的相移阵列器件来光学地实现。该阵列器件具有周期性的两步相位分布,并且与三步和四步并行相移数字全息图所需的配置相比,其配置得到了简化。因此,所提出技术的光学系统更适合于实现并行相移数字全息系统。我们对提出的技术进行了数值模拟和初步实验。仿真和实验的结果与顺序相移数字全息术的结果非常吻合,并且结果优于仅使用菲涅耳变换的传统数字全息术所获得的结果。因此,验证了所提出技术的有效性。

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