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用于与 CCD 探测器耦合的高空间分辨率 Csl 闪烁体屏的性能模型。

Performance Model for High Spatial Resolution Csl Scintillator Screens Coupled to CCD Detectors.

机构信息

Department of Electronics, University of York, Heslington, York, YO1 5DD, United Kingdom.

出版信息

J Xray Sci Technol. 1995 Jan 1;5(2):207-20. doi: 10.3233/XST-1995-5204.

Abstract

A performance model for an x-ray imaging camera that is currently being developed at York University for the recording of crystallographic diffraction patterns produced by synchrotron radiation is presented. The camera is based on charge coupled device (CCD) sensors which are coupled to a CsI(Tl) x-ray scintillator screen using 3:1 reducing fiber optic tapers. The model predicts the accuracy to which diffraction spot intensities can be measured over a range of incident x-ray flux. The effect of the point spread function of the scintillator and optics and the typical expected diffraction spot geometry is included in the model and shown to have the most significant effect on the system performance for low spot intensities, limiting the camera's effective dynamic range. However, it is shown that quantum limited performance for incident dose fluxes as low as 100 photons per spot can be readily achieved in this design. Finally, the camera performance is predicted for x-ray energies above the scintillator K absorption edges (>33 keV). The effects of energy loss through scintillation K shell fluorescent escape photons reduces the camera's detective quantum efficiency.

摘要

目前正在约克大学开发一种用于记录同步辐射产生的晶体衍射图案的 X 射线成像相机,本文提出了该相机的一种性能模型。该相机基于电荷耦合器件(CCD)传感器,通过 3:1 减光光纤锥将其与碘化铯(Tl)X 射线闪烁体屏幕耦合。该模型预测了在不同入射 X 射线通量范围内测量衍射光斑强度的精度。模型中包含了闪烁体和光学器件的点扩散函数以及典型的预期衍射光斑几何形状的影响,结果表明,对于低光斑强度,这些影响对系统性能的影响最大,限制了相机的有效动态范围。然而,结果表明,在这种设计中,很容易实现低至 100 个光子/光斑的入射剂量通量的量子限制性能。最后,预测了该相机在闪烁体 K 吸收边以上的 X 射线能量(>33keV)下的性能。通过闪烁体 K 壳层荧光逃逸光子的能量损失,降低了相机的探测量子效率。

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