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High resolution x-ray and γ-ray imaging using a scintillator-coupled electron-multiplying CCD

机译:使用闪烁体耦合电子倍增CCD的高分辨率X射线和γ射线成像

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摘要

Over the last decade the rapid advancements in CCD technology have lead to significant developments in the field of low-light-level, Electron-Multiplying CCDs (EM-CCDs). The addition of a gain register before output allows signal electrons to be multiplied without increasing the external noise. This low effective readout noise, which can be reduced to the sub-electron level, allows very small signal levels to be detected. Caesium iodide is one of the most popular scintillation materials due to its many desirable properties. Approximately 60 photons are produced per keV of incident X-ray or γ-ray with wavelengths peaking at 550 nm (dependent on doping), matching the peak in the quantum efficiency of the back-illuminated CCD97 of over 90%. Using a scintillator coupled to an EMCCD it is possible to resolve individual interactions inside the scintillator. Multiple frames can be taken in quick succession with hundreds of interactions per frame. These interactions can be analysed individually using sub-pixel centroiding and the data compiled to create an image of a much higher resolution than that achieved with a single integrated frame. The interaction mechanism inside the scintillator is discussed with relation to the spatial and spectral resolution of the camera system. Analysis of individual events opens up the possibility of energy discrimination through the profiling of each interaction.
机译:在过去的十年中,CCD技术的飞速发展导致了微光电子倍增CCD(EM-CCD)领域的重大发展。在输出之前增加增益寄存器可以使信号电子倍增而不会增加外部噪声。这种低有效读出噪声可以降低到亚电子水平,因此可以检测到非常小的信号水平。碘化铯由于其许多理想的特性而成为最受欢迎的闪烁材料之一。每keV入射的X射线或γ射线每keV产生约60个光子,其波长在550 nm处达到峰值(取决于掺杂),与背照式CCD97的量子效率峰值匹配超过90%。使用与EMCCD耦合的闪烁器,可以解决闪烁器内部的各个相互作用。可以快速连续拍摄多个帧,每个帧进行数百次交互。可以使用子像素质心对这些相互作用进行单独分析,并编译数据以创建分辨率比单个集成框架高得多的图像。讨论了闪烁器内部的相互作用机制,并与照相机系统的空间和光谱分辨率有关。对单个事件的分析通过对每个交互进行分析,打开了能量歧视的可能性。

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    Hall David; Holland Andrew;

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  • 年度 2009
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  • 正文语种 en
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