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Phase-space evolution of x-ray coherence in phase-sensitive imaging

机译:相敏成像中x射线相干的相空间演化

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摘要

X-ray coherence evolution in the imaging process plays a key role for x-ray phase-sensitive imaging. In this work we present a phase-space formulation for the phase-sensitive imaging. The theory is reformulated in terms of the cross-spectral density and associated Wigner distribution. The phase-space formulation enables an explicit and quantitative account of partial coherence effects on phase-sensitive imaging. The presented formulas for x-ray spectral density at the detector can be used for performing accurate phase retrieval and optimizing the phase-contrast visibility. The concept of phase-space shearing length derived from this phase-space formulation clarifies the spatial coherence requirement for phase-sensitive imaging with incoherent sources. The theory has been applied to x-ray Talbot interferometric imaging as well. The peak coherence condition derived reveals new insights into three-grating-based Talbot-interferometric imaging and gratings-based x-ray dark-field imaging.
机译:成像过程中的X射线相干性演变对于X射线相敏成像具有关键作用。在这项工作中,我们提出了一种用于相敏成像的相空间公式。根据互谱密度和相关的维格纳分布重新定义了该理论。相空间公式化可以对相干成像的部分相干效应进行明确和定量的说明。在探测器处呈现的X射线光谱密度公式可用于执行准确的相位检索并优化相位对比可见性。从此相空间公式得出的相空间剪切长度的概念阐明了使用非相干源进行相敏成像的空间相干性要求。该理论也已应用于X射线Talbot干涉成像。导出的峰值相干条件揭示了对基于三光栅的Talbot干涉成像和基于光栅的X射线暗场成像的新见解。

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