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调制相位光栅X射线干涉仪的理论与实验分析。

Theoretical and experimental analysis of the modulated phase grating X-ray interferometer.

作者信息

Meyer Hunter, Dey Joyoni, Carr Sydney, Ham Kyungmin, Butler Leslie G, Dooley Kerry M, Hidrovo Ivan, Bleuel Markus, Varga Tamas, Schulz Joachim, Beckenbach Thomas, Kaiser Konradin

机构信息

Department of Physics and Astronomy, Louisiana State University, Baton Rouge, 70803, LA, USA.

Naval Dosimetry Center, Navy Medicine, MD, 20889-5629, Bethesda, USA.

出版信息

Sci Rep. 2024 Nov 5;14(1):26780. doi: 10.1038/s41598-024-78133-8.

Abstract

X-ray grating interferometry allows for the simultaneous acquisition of attenuation, differential-phase contrast, and dark-field images, resulting from X-ray attenuation, refraction, and small-angle scattering, respectively. The modulated phase grating (MPG) interferometer is a recently developed grating interferometry system capable of generating a directly resolvable interference pattern using a relatively large period grating envelope function that is sampled at a pitch that is small enough that X-ray spatial coherence can be achieved by using a microfocus X-ray source or G0 grating. We present the theory of the MPG interferometry system for a 2-dimensional staggered grating, derived using Fourier optics, and we compare the theoretical predictions with experiments we have performed with a microfocus X-ray system at Pennington Biomedical Research Center, LSU. The theoretical and experimental fringe visibility is evaluated as a function of grating-to-detector distance. Additionally, quantitative experiments are performed with porous carbon and alumina compounds, and the mean normalized dark-field signal is compared with independent porosimetry measurements. Qualitative analysis of attenuation and dark-field images of a dried anchovy are shown.

摘要

X射线光栅干涉术能够同时采集分别由X射线衰减、折射和小角度散射产生的衰减图像、微分相衬图像和暗场图像。调制相位光栅(MPG)干涉仪是一种最近开发的光栅干涉测量系统,它能够使用相对较大周期的光栅包络函数生成直接可分辨的干涉图样,该函数以足够小的间距进行采样,以至于通过使用微焦点X射线源或G0光栅能够实现X射线空间相干性。我们介绍了二维交错光栅的MPG干涉测量系统的理论,该理论是使用傅里叶光学推导出来的,并且我们将理论预测结果与我们在路易斯安那州立大学彭宁顿生物医学研究中心使用微焦点X射线系统所进行的实验进行了比较。理论和实验条纹可见度作为光栅到探测器距离的函数进行评估。此外,对多孔碳和氧化铝化合物进行了定量实验,并将平均归一化暗场信号与独立的孔隙率测量结果进行了比较。展示了干凤尾鱼衰减图像和暗场图像的定性分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b2e/11538336/3c43fb2ff68f/41598_2024_78133_Fig1_HTML.jpg

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