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Rapid phase calibration of a spatial light modulator using novel phase masks and optimization of its efficiency using an iterative algorithm

机译:使用新型相掩模的空间光调制器的快速相位校准,并使用迭代算法优化其效率

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We develop an improved phase calibration method of a reflective SLM using interferometry by employing novel phase masks. In the process, we definitively determine the actual maximum phase throw of our SLM which provides a recipe for users to verify supplier specifications. We generate optimised phase masks by using Iterative Fourier Transform Algorithm (IFTA) and compare their performance with global linear corrections in the look-up table (LUT) and find that the former perform with around 20% better efficiency. Besides obtaining an array of 1D/2D spots having high uniformity (90%) using IFTA, our result exemplifies the use of iterative algorithms for improving efficiency of phase limited SLMs. Finally, our improved phase calibration method enables threefold faster phase measurements, and to the best of our knowledge, is the first endeavour directed towards enabling rapid phase characterisation of an SLM using interferometric measurements. We believe that it can have very useful applications in settings which may require fast phase calibrations as well as for real-time, multi-wavelength spectroscopic applications.
机译:我们提出了一种改进的基于干涉测量的反射式SLM相位校准方法。在这个过程中,我们最终确定了SLM的实际最大相位差,这为用户提供了验证供应商规格的方法。我们使用迭代傅里叶变换算法(IFTA)生成优化的相位掩模,并将其性能与查找表(LUT)中的全局线性校正进行比较,发现前者的效率提高了约20%。除了使用IFTA获得具有高均匀性(90%)的1D/2D点阵列之外,我们的结果还举例说明了使用迭代算法来提高相位受限SLM的效率。最后,我们改进的相位校准方法使相位测量速度提高了三倍,据我们所知,这是第一次尝试使用干涉测量实现SLM的快速相位特征化。我们相信,在可能需要快速相位校准的环境中,以及在实时、多波长光谱应用中,它可以有非常有用的应用。

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