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从劳厄数据中提取精确的结构因子振幅:利用波荡器和摆动器X射线源进行波长归一化

Extraction of accurate structure-factor amplitudes from Laue data: wavelength normalization with wiggler and undulator X-ray sources.

作者信息

Srajer V, Crosson S, Schmidt M, Key J, Schotte F, Anderson S, Perman B, Ren Z, Teng T Y, Bourgeois D, Wulff M, Moffat K

机构信息

Department of Biochemistry and Molecular Biology, The University of Chicago, 920 East 58th Street, Chicago, IL 60637, USA.

出版信息

J Synchrotron Radiat. 2000 Jul 1;7(Pt 4):236-44. doi: 10.1107/S0909049500004672.

Abstract

Wavelength normalization is an essential part of processing of Laue X-ray diffraction data and is critically important for deriving accurate structure-factor amplitudes. The results of wavelength normalization for Laue data obtained in nanosecond time-resolved experiments at the ID09 beamline at the European Synchrotron Radiation Facility, Grenoble, France, are presented. Several wiggler and undulator insertion devices with complex spectra were used. The results show that even in the most challenging cases, such as wiggler/undulator tandems or single-line undulators, accurate wavelength normalization does not require unusually redundant Laue data and can be accomplished using typical Laue data sets. Single-line undulator spectra derived from Laue data compare well with the measured incident X-ray spectra. Successful wavelength normalization of the undulator data was also confirmed by the observed signal in nanosecond time-resolved experiments. Single-line undulators, which are attractive for time-resolved experiments due to their high peak intensity and low polychromatic background, are compared with wigglers, based on data obtained on the same crystal.

摘要

波长归一化是劳厄X射线衍射数据处理的重要组成部分,对于准确推导结构因子振幅至关重要。本文展示了在法国格勒诺布尔欧洲同步辐射装置的ID09光束线上进行的纳秒时间分辨实验中获得的劳厄数据的波长归一化结果。使用了几种具有复杂光谱的摆动器和波荡器插入装置。结果表明,即使在最具挑战性的情况下,如摆动器/波荡器串联或单线波荡器,准确的波长归一化也不需要异常冗余的劳厄数据,使用典型的劳厄数据集即可完成。从劳厄数据导出的单线波荡器光谱与测量的入射X射线光谱比较吻合。纳秒时间分辨实验中观察到的信号也证实了波荡器数据的成功波长归一化。基于在同一晶体上获得的数据,将因高峰强度和低多色背景而对时间分辨实验具有吸引力的单线波荡器与摆动器进行了比较。

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