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Gradual edge enhancement in spiral phase contrast imaging with fractional vortex filters

机译:分数涡滤器在螺旋相位对比成像中的渐进边缘增强

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摘要

In the spiral phase contrast imaging, the integer spiral phase plate (SPP) are generally employed to perform the radial Hilbert transform on the object. Here we introduce fractional SPP filters, instead of the integer ones, to investigate the gradual formation of edge enhancement for pure phase objects. Two spatial light modulators are used in our experimental configuration. One is addressed to display the pure phase object of a five-pointed star, while the other serves as a dynamic filter of fractional topological charge Q. Of interest is the observation of the complete reversal of the edge and background brightness by gradually changing the fractional vortices from Q = 0 to 1. The experimental results were well interpreted based on the OAM spectra of fractional SPP, which indicates that the filtered output image can be considered as a coherent superposition of all possible images that are individually resulted from the integer OAM filtering. Besides, we show that the spiral phase contrast effect can still be observed in real time for a rotating three-leaf clover. Our results may find potential applications in the optical microscopic imaging.
机译:在螺旋相位对比成像中,通常使用整数螺旋相位板(SPP)对物体执行径向希尔伯特变换。在这里,我们介绍了分数SPP滤波器,而不是整数滤波器,以研究纯相位对象的边缘增强的逐步形成。在我们的实验配置中使用了两个空间光调制器。一个指向显示五角星的纯相位对象,另一个用作分数拓扑电荷Q的动态滤波器。有趣的是,通过逐渐改变分数来观察边缘和背景亮度的完全反转旋涡从Q = 0到1。基于分数SPP的OAM光谱对实验结果进行了很好的解释,这表明滤波后的输出图像可以看作是由整数OAM滤波单独产生的所有可能图像的相干叠加。此外,我们表明,对于旋转的三叶三叶草,仍然可以实时观察到螺旋相位对比效果。我们的结果可能会在光学显微成像中找到潜在的应用。

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