Ritter André, Bartl Peter, Bayer Florian, Gödel Karl C, Haas Wilhelm, Michel Thilo, Pelzer Georg, Rieger Jens, Weber Thomas, Zang Andrea, Anton Gisela
Opt Express. 2014 Sep 22;22(19):23276-89. doi: 10.1364/OE.22.023276.
A simulation framework for coherent X-ray imaging, based on scalar diffraction theory, is presented. It contains a core C++ library and an additional Python interface. A workflow is presented to include contributions of inelastic scattering obtained with Monte-Carlo methods. X-ray Talbot-Lau interferometry is the primary focus of the framework. Simulations are in agreement with measurements obtained with such an interferometer. Especially, the dark-field signal of densely packed PMMA microspheres is predicted. A realistic modeling of the microsphere distribution, which is necessary for correct results, is presented. The framework can be used for both setup design and optimization but also to test and improve reconstruction methods.
提出了一种基于标量衍射理论的相干X射线成像模拟框架。它包含一个核心C++库和一个额外的Python接口。给出了一个工作流程,其中纳入了用蒙特卡罗方法获得的非弹性散射的贡献。X射线塔尔博特-劳干涉术是该框架的主要关注点。模拟结果与用这种干涉仪获得的测量结果一致。特别是,预测了密集排列的聚甲基丙烯酸甲酯微球的暗场信号。给出了微球分布的真实建模,这对于获得正确结果是必要的。该框架可用于设置设计和优化,也可用于测试和改进重建方法。