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使用硬X射线自由电子激光的飞秒时间分辨粉末衍射实验。

Femtosecond time-resolved powder diffraction experiments using hard X-ray free-electron lasers.

作者信息

Blome C, Tschentscher Th, Davaasambuu J, Durand P, Techert S

机构信息

HASYLAB at DESY, Notkestrasse 85, D-22607 Hamburg, Germany.

出版信息

J Synchrotron Radiat. 2005 Nov;12(Pt 6):812-9. doi: 10.1107/S0909049505026464. Epub 2005 Oct 18.

Abstract

In the next decade the scientific community expects a strong impact in physics, chemistry, biology, material research and life sciences by the availability of high-brilliance X-ray radiation from free-electron laser (FEL) sources. In particular, in the field of ultrafast science these new sources will allow new types of experiments, enabling new phenomena to be discovered. Whereas today ultrafast X-ray diffraction experiments are strongly restricted by the limited X-ray flux of current sources of sub-picosecond X-ray pulses, FELs will provide short pulses of typically 10(12) photons with a duration of the order of 100 fs and monochromaticity of 10(-3). Here, the feasibility of time-resolved single-shot powder diffraction experiments using these intense pulses, and the requirements of these experiments, are discussed. The detector count rates are estimated for diffraction from a model compound in a wide q-regime under the special consideration of high resolving power. In the case of LCLS radiation parameters, single-shot experiments will be feasible although high-resolution powder diffraction will require a reduction of the intrinsic FEL radiation bandwidth.

摘要

在未来十年,科学界预计自由电子激光(FEL)源产生的高亮度X射线辐射将对物理、化学、生物学、材料研究和生命科学产生重大影响。特别是在超快科学领域,这些新光源将允许进行新型实验,从而发现新现象。如今,超快X射线衍射实验受到当前亚皮秒X射线脉冲源有限的X射线通量的强烈限制,而自由电子激光将提供典型的10¹²个光子的短脉冲,脉冲持续时间约为100飞秒,单色性为10⁻³。本文讨论了使用这些强脉冲进行时间分辨单次粉末衍射实验的可行性以及这些实验的要求。在特别考虑高分辨能力的情况下,估计了在宽q范围内从模型化合物进行衍射时的探测器计数率。对于直线加速器相干光源(LCLS)的辐射参数,单次实验将是可行的,尽管高分辨率粉末衍射需要减小自由电子激光的固有辐射带宽。

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