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Quantitative analysis of a micro array anode structured target for hard x-ray grating interferometry

机译:用于硬X射线光栅干涉法的微阵阳极结构靶的定量分析

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Talbot-Lau interferometry (TLI) provides additional contrast modes for x-ray imaging that are complementary to conventional absorption radiography. TLI is particularly interesting because it is one of the few practical methods for realizing phase contrast with x-rays that is compatible with large-spot high power x-ray sources. A novel micro array anode structured target (MAAST) x-ray source offers several advantages for TLI over the conventional combination of an extended x-ray source coupled with an absorption grating including higher flux and larger field of view, and these advantages become more pronounced for x-ray energies in excess of 30 keV. A Monte Carlo simulation was performed to determine the optimal parameters for a MAAST source for use with TLI. It was found that the both spatial distribution of x-ray production and the number of x-ray produced in the MAAST have a strong dependence on the incidence angle of the electron beam.
机译:Talbot-Lau干涉测量学(TLI)为X射线成像提供了额外的对比模式,该X射线成像与常规吸收放射照相互补。 TLI特别有趣,因为它是实现与兼容大点高功率X射线源相兼容的X射线的相位对比的实用方法之一。 一种新型微阵列阳极结构靶(MAAST)X射线源为TLI提供了几个优点,其在耦合的延伸X射线源与吸收光栅的常规组合上,包括更高的助焊剂和更大的视野,并且这些优点变得更加明显 对于超过30 kev的X射线能量。 执行蒙特卡罗模拟以确定MAAST源与TLI一起使用的最佳参数。 发现X射线产生的空间分布和MAAST中产生的X射线的数量对电子束的入射角具有很强的依赖性。

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