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Differential phase contrast with a segmented detector in a scanning X-ray microprobe

机译:X射线扫描微探针中分段检测器的差分相衬

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摘要

Scanning X-ray microprobes are unique tools for the nanoscale investigation of specimens from the life, environmental, materials and other fields of sciences. Typically they utilize absorption and fluorescence as contrast mechanisms. Phase contrast is a complementary technique that can provide strong contrast with reduced radiation dose for weakly absorbing structures in the multi-keV range. In this paper the development of a segmented charge-integrating silicon detector which provides simultaneous absorption and differential phase contrast is reported. The detector can be used together with a fluorescence detector for the simultaneous acquisition of transmission and fluorescence data. It can be used over a wide range of photon energies, photon rates and exposure times at third-generation synchrotron radiation sources, and is currently operating at two beamlines at the Advanced Photon Source. Images obtained at around 2 keV and 10 keV demonstrate the superiority of phase contrast over absorption for specimens composed of light elements.
机译:扫描X射线微探针是从生命,环境,材料和其他科学领域对标本进行纳米级研究的独特工具。通常,它们利用吸收和荧光作为对比机制。相衬是一种补充技术,可以为多keV范围内的弱吸收结构提供强的对比度,并减少辐射剂量。在本文中,报道了分段电荷积分硅检测器的开发,该检测器提供了同时吸收和微分相衬。该检测器可以与荧光检测器一起使用,以同时获取透射和荧光数据。它可以在第三代同步加速器辐射源上用于各种光子能量,光子速率和曝光时间,并且目前在高级光子源的两条光束线上运行。在约2 keV和10 keV处获得的图像证明了由光元素组成的样品的相衬优于吸收。

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