4.4 Article

8-inch-diameter field of view for X-ray differential phase-contrast imaging

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ELSEVIER
DOI: 10.1016/j.nima.2021.165375

关键词

X-ray; Bent phase gratings; Absorption gratings; Talbot-Lau interferometers; Phase-contrast

资金

  1. National Natural Science Foundation, China [61227802, 62075141]
  2. Natural Science Foundation of Guangdong Province [2021A1515010051]
  3. Natural Science Foundation of SZU, China
  4. Foundation of Shenzhen Science and Technology Bureau, China [JCYJ20170302142617703]

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The study introduced a method for preparing curved silicon-based phase gratings, utilizing mechanical stress to bend the silicon-based phase gratings cylindrically, allowing Moire fringes to appear in the entire imaging range. Experimental applications demonstrated that this technology can achieve multi-contrast imaging within the entire 8-inch imaging field.
The X-ray differential phase-contrast imaging (DPCI) based on Talbot-Lau interferometers (TLIs) is a promising imaging technique for non-destructive testing. The compact imaging configurations that have a large field-ofview (FoV) require the use of bent phase gratings and large-area analyzer gratings. The cascaded TLIs reduce the aspect ratio requirement of large-area analyzer gratings, which facilitates the fabrication of these gratings. However, the bent silicon-based phase gratings are difficult to obtain directly because of the brittleness of silicon wafers. In this work, we present a method to prepare 5-inch cylindrically bent silicon-based phase gratings and 8-inch analyzer gratings. Moreover, we also present their applications in the cascaded TLIs. The mechanical stress that originates from thermal oxidation enables us to cylindrically bend silicon-based phase gratings. Furthermore, as compared to the use of plane phase gratings, the use of cylindrically bent phase gratings allows Moire fringes to appear in the entire 8-inch FoV. Finally, Moire fringes and multicontrast images of the samples (water, liquid soap filled in heat-shrink tubes) demonstrate the effectiveness of the fabrication of the bent silicon-based phase gratings and imaging in the entire 8-inch FoV. The proposed configuration is applicable for attaining multi-contrast images with 8-inch FoV at a low cost.

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