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High-speed hard X-ray phase-enhanced imaging

机译:高速硬X射线相位增强成像

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摘要

Conventional x-ray imaging relies on the differences in the absorption of the sample to provide image contrast. With the small source sizes and large source-sample distances at synchrotrons, an additional mechanism, phase contrast, can come into play. Phase effects, which include refraction and diffraction, can greatly enhance the image contrast. Phase contrast is particularly useful in cases where the absorption contrast is weak. Added to this, the high x-ray flux available at synchrotrons allows for unprecedented high-speed and high-resolution x-ray imaging. We demonstrate that high quality time resolved images with sub-microsecond temporal and micrometer spatial resolutions are feasible. The range of energy spectrum (5-150 keV) available at the Advanced Photon Source allows us to study a wide range of samples, from soft tissues to high-Z materials. We will present preliminary results from the steel automobile fuel injectors and liquid-air sprays.
机译:常规的X射线成像依赖于样品吸收率的差异来提供图像对比度。由于同步辐射源的信号源尺寸小且信号源样本距离大,因此可以使用另一种机制,即相衬度。相位效应(包括折射和衍射)可以大大增强图像对比度。在吸收对比度较弱的情况下,相位对比度特别有用。除此之外,同步加速器上可用的高X射线通量允许进行前所未有的高速和高分辨率X射线成像。我们证明了具有亚微秒级时间和微米级空间分辨率的高质量时间分辨图像是可行的。高级光子源提供的能谱范围(5-150 keV)使我们能够研究从软组织到高Z材料的各种样品。我们将介绍钢制汽车喷油器和液体空气喷雾器的初步结果。

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