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Optimization of a three slit collimation system for a SAXS camera with a divergent beam

机译:具有发散光束的SAXS相机的三缝准直系统的优化

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Using the three slit collimation system with a divergent beam simplifies the design of a small angle X-ray scattering (SAXS) cameras and improves both flux and stability. To achieve the required low angle and a high spatial resolution, the collimation system must be optimized in the design and operation phases. Simulation of a slit divergent camera yields optimal distance between the beam defining slits and optimal distance between sample and detector at which the maximum SAXS resolution is achieved with a minimal parasitic scattering for any length of the SAXS camera. The narrower the beam defining slits and the longer the total camera length, the smaller the minimum resolvable angle and the higher the attainable resolution.
机译:将三狭缝准直系统与发散光束一起使用可简化小角度X射线散射(SAXS)相机的设计,并提高通量和稳定性。为了获得所需的小角度和高空间分辨率,必须在设计和操作阶段优化准直系统。狭缝发散相机的仿真产生了光束在定义狭缝之间的最佳距离,以及样品与检测器之间的最佳距离,在该距离下,对于任何长度的SAXS相机,SAXS分辨率都达到了最高,而寄生散射最小。光束定义的缝隙越窄,相机的总长度越长,最小可分辨角度越小,可获得的分辨率越高。

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