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首页> 外文期刊>Journal of synchrotron radiation >Beamline 10.3.2 at ALS: a hard X-ray microprobe for environmental and materials sciences
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Beamline 10.3.2 at ALS: a hard X-ray microprobe for environmental and materials sciences

机译:ALS的Beamline 10.3.2:适用于环境和材料科学的硬X射线微探针

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摘要

Beamline 10.3.2 at the ALS is a bend-magnet line designed mostly for work on environmental problems involving heavy-metal speciation and location. It offers a unique combination of X-ray fluorescence mapping, X-ray microspectroscopy and micro-X-ray diffraction. The optics allow the user to trade spot size for flux in a size range of 5-17 mum in an energy range of 3-17 keV. The focusing uses a Kirkpatrick-Baez mirror pair to image a variable-size virtual source onto the sample. Thus, the user can reduce the effective size of the source, thereby reducing the spot size on the sample, at the cost of flux. This decoupling from the actual source also allows for some independence from source motion. The X-ray fluorescence mapping is performed with a continuously scanning stage which avoids the time overhead incurred by step-and-repeat mapping schemes. The special features of this beamline are described, and some scientific results shown.
机译:ALS的Beamline 10.3.2是一条弯曲磁铁线,主要用于解决涉及重金属形态和位置的环境问题。它提供了X射线荧光映射,X射线显微光谱和微X射线衍射的独特组合。光学器件使用户可以在3-17 keV的能量范围内以5-17微米大小范围内的通量交换光斑尺寸。聚焦使用Kirkpatrick-Baez镜像对将可变大小的虚拟源成像到样本上。因此,使用者可以减小光源的有效尺寸,从而以通量为代价减小样品上的斑点尺寸。与实际震源的这种解耦还允许与震源运动有一定的独立性。 X射线荧光映射是在连续扫描阶段执行的,这避免了分步重复映射方案带来的时间开销。描述了该光束线的特殊功能,并显示了一些科学结果。

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