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首页> 外文期刊>Journal of optics >Phase-and-amplitude recovery from a single phase-contrast image using partially spatially coherent x-ray radiation
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Phase-and-amplitude recovery from a single phase-contrast image using partially spatially coherent x-ray radiation

机译:使用部分空间相干X射线辐射从单相对比图像中恢复相位和幅度恢复

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A simple method of phase-and-amplitude extraction is derived that corrects for image blurring induced by partially spatially coherent incident illumination using only a single intensity image as input. The method is based on Fresnel diffraction theory for the case of high Fresnel number, merged with the space-frequency description formalism used to quantify partially coherent fields and assumes the object under study is composed of a single-material. A priori knowledge of the object's complex refractive index and information obtained by characterizing the spatial coherence of the source is required. The algorithm was applied to propagation-based phase-contrast data measured with a laboratory-based micro-focus x-ray source. The blurring due to the finite spatial extent of the source is embedded within the algorithm as a simple correction term to the so-called Paganin algorithm and is also numerically stable in the presence of noise.
机译:导出了一种简单的相位和幅度提取方法,其仅使用仅使用单个强度图像作为输入的局部空间相干的入射光照射诱导的图像模糊。 该方法基于用于高菲涅耳数的情况的菲涅耳衍射理论,与空间频率描述形式主义合并,用于量化部分相干的场,并假设正在研究的物体由单材料组成。 需要先验对象的复杂折射率和通过表征源的空间相干来获得的信息。 用基于实验室的微焦X射线源测量的基于传播的相位对比度数据。 由于源的有限空间程度而模糊地嵌入到算法内作为所谓的Paganin算法的简单校正项,并且在噪声存在下也是数值稳定的。

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