Opt Express. 2023 Jan 16;31(2):1677-1691. doi: 10.1364/OE.477964.
In this work, we analyze the interference patterns measured in lab-based dual-phase grating interferometry and for the first time explain the spatial dependencies of the measured interference patterns and the large visibility deviations between the theoretical prediction and the experimental results. To achieve this, a simulator based on wave propagation is developed. This work proves that the experimental results can be simulated with high accuracy by including the effective grating thickness profile induced by the cone-beam geometry, the measured detector response function and a non-ideal grating shape. With the comprehensive understanding of dual-phase grating interferometry, this provides the foundations for a more efficient and accurate algorithm to retrieve sample's structure information, and the realistic simulator is a useful tool for optimizing the set-up.
在这项工作中,我们分析了基于实验室的双相位光栅干涉测量中测量到的干涉模式,并首次解释了测量到的干涉模式的空间依赖性以及理论预测与实验结果之间的大可见度偏差。为了实现这一点,开发了一种基于波传播的模拟器。这项工作证明,通过包括由锥束几何形状引起的有效光栅厚度轮廓、测量的探测器响应函数和不理想的光栅形状,可以通过包含有效光栅厚度轮廓、测量的探测器响应函数和不理想的光栅形状,以高精度模拟实验结果。通过对双相位光栅干涉测量的全面理解,这为更有效地检索样品结构信息提供了基础算法,并且现实模拟器是优化设置的有用工具。