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Strategies and limitations for fluorescence detection of XAFS at high flux beamlines

机译:高通量光束线下XAFS荧光检测的策略和局限性

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摘要

The issue of detecting the XAFS signal from dilute samples is discussed in detail with the aim of making best use of high flux beamlines that provide up to 1013 photons s−1. Various detection methods are compared, including filters with slits, solid state detectors, crystal analyzers and combinations of these. These comparisons rely on simulations that use experimentally determined parameters. It is found that inelastic scattering places a fundamental limit on detection, and that it is important to take proper account of the polarization dependence of the signals. The combination of a filter–slit system with a solid state detector is a promising approach. With an optimized system good performance can be obtained even if the total count rate is limited to 107 Hz. Detection schemes with better energy resolution can help at the largest dilutions if their collection efficiency and count rate limits can be improved.
机译:详细讨论了从稀样品中检测XAFS信号的问题,目的是充分利用提供高达10 13 光子s -1 的高通量光束线。比较了各种检测方法,包括带缝隙的过滤器,固态检测器,晶体分析仪及其组合。这些比较依赖于使用实验确定的参数的模拟。已经发现,非弹性散射对检测设置了基本限制,并且重要的是适当考虑信号的偏振依赖性。滤波器-狭缝系统与固态检测器的组合是一种很有前途的方法。通过优化的系统,即使总计数率限制为10 7 Hz,也可以获得良好的性能。如果能提高其收集效率和计数率极限,则具有更好能量分辨率的检测方案可以最大程度地帮助稀释。

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