JOURNAL ARTICLE

Cascade Talbot–Lau interferometers for x-ray differential phase-contrast imaging

Yaohu LeiXin LiuJianheng HuangYang DuJinchuan GuoZhigang ZhaoJi Li

Year: 2018 Journal:   Journal of Physics D Applied Physics Vol: 51 (38)Pages: 385302-385302   Publisher: Institute of Physics

Abstract

X-ray Talbot–Lau interferometer (TLI)-based differential phase-contrast imaging (DPCI), owing to its potential capability of multiple contrast mechanisms and adaptability for variety of samples, has attracted wide spread attention in the last decade. However, the fabrication of the absorption grating, an indispensable element in a conventional TLI, presents a significant challenge for practical applications. Here, we report on a cascaded TLI (CTLI) configuration for DPCI, i.e. a TLI followed by an inverse TLI (ITLI), through which the small-period high-aspect-ratio (HAR) absorption gratings (analyzer gratings and source gratings in the conventional TLI and ITLI, respectively) could be omitted. Instead, the large-period absorption gratings (generally tens of microns) are allowed to be employed, which significantly relieves the grating fabrication difficulties, especially for the large-area ones. The success of our CTLI configuration is validated by the observation of moiré fringes, and the resulting phase-contrast and visibility-contrast images for DPCI. Moreover, our CTLI configuration is promising to yield magnified interference fringes capable of being detected directly by commonly used large-area detectors.

Keywords:
Optics Grating Talbot effect Astronomical interferometer Interferometry Fabrication Phase-contrast imaging Absorption (acoustics) Visibility Physics Materials science Interference (communication) Diffraction grating Differential phase Phase (matter) Computer science Telecommunications Phase contrast microscopy

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20
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0.85
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Citation History

Topics

Advanced X-ray Imaging Techniques
Physical Sciences →  Physics and Astronomy →  Radiation
X-ray Spectroscopy and Fluorescence Analysis
Physical Sciences →  Physics and Astronomy →  Radiation
Laser-Plasma Interactions and Diagnostics
Physical Sciences →  Physics and Astronomy →  Nuclear and High Energy Physics

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