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Coherent convergent-beam time-resolved X-ray diffraction

机译:相干会聚光束时间分辨X射线衍射

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摘要

The use of coherent X-ray lasers for structural biology allows the use of nanometre diameter X-ray beams with large beam divergence. Their application to the structure analysis of protein nanocrystals and single particles raises new challenges and opportunities. We discuss the form of these coherent convergent-beam (CCB) hard X-ray diffraction patterns and their potential use for time-resolved crystallography, normally achieved by Laue (polychromatic) diffraction, for which the monochromatic laser radiation of a free-electron X-ray laser is unsuitable. We discuss the possibility of obtaining single-shot, angle-integrated rocking curves from CCB patterns, and the dependence of the resulting patterns on the focused beam coordinate when the beam diameter is larger or smaller than a nanocrystal, or smaller than one unit cell. We show how structure factor phase information is provided at overlapping interfering orders and how a common phase origin between different shots may be obtained. Their use in refinement of the phase-sensitive intensity between overlapping orders is suggested.
机译:使用相干X射线激光进行结构生物学可以使用具有大束发散度的纳米直径X射线束。它们在蛋白质纳米晶体和单个颗粒的结构分析中的应用提出了新的挑战和机遇。我们讨论了这些相干会聚束(CCB)硬X射线衍射图的形式,以及它们在时间分辨晶体学中的潜在用途,通常通过劳厄(多色)衍射实现,为此,自由电子X的单色激光辐射射线激光不合适。我们讨论了从CCB模式获得单发,角度积分的摇摆曲线的可能性,以及当光束直径大于或小于纳米晶体或小于一个晶胞时所得图案对聚焦光束坐标的依赖性。我们展示了如何以重叠的干扰顺序提供结构因子相位信息,以及如何获得不同镜头之间的公共相位起源。建议将其用于细化重叠顺序之间的相敏强度。

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