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Laue diffraction and time-resolved crystallography: a personal history

机译:Laue衍射和时间分辨晶体学:个人历史

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A personal, historical view is presented of Laue X-ray diffraction and its application to time-resolved studies of dynamic processes, largely in light-sensitive biological systems. In Laue diffraction, a stationary crystal is illuminated by a polychromatic X-ray source. Laue diffraction has inherent complications largely absent in monochromatic diffraction, and consequently fell into disuse for quantitative structure determination. However, the advent of naturally polychromatic, intense, pulsed storage ring X-ray sources in the 1970s led to re-examination at Daresbury and elsewhere of its underlying principles. Laue diffraction has been successfully applied at storage ring sources to time-resolved, pump-probe crystallographic studies, whose exposure time and time resolution were progressively reduced from minutes to seconds, milliseconds, nanoseconds and 100 ps. Most recently, hard X-ray free electron laser sources have been used to generate narrow bandpass Laue diffraction patterns. The femtosecond X-ray pulses from such sources are completely destructive, generate only one diffraction pattern per tiny crystal and have unusual properties. However, they too are being applied to time-resolved crystallography to explore, for example, isomerization and rapid tertiary structural changes on the chemical, femtosecond timescale.
机译:借鉴借调X射线衍射及其应用于动态过程的时间分辨,主要是在光敏生物系统中的应用。在Laue衍射中,通过多色X射线源照射固定晶体。 Laue衍射具有很大程度上不存在于单色衍射中的固有的并发症,因此陷入了用于定量结构测定的废物。然而,在20世纪70年代自然多色彩,强烈,脉冲储存环X射线源的出现导致Daresbury和其潜在原则的其他地方重新检查。 Laue衍射已经成功地应用于储存环源,以时间分辨,泵浦探针晶体研究,其暴露时间和时间分辨率从分钟,毫秒,纳秒和100 ps逐渐减少。最近,已经使用硬X射线自由电子激光源来产生窄的带通拉丝衍射图案。来自这些来源的飞秒X射线脉冲是完全破坏性的,仅产生每微小晶体的一个衍射图谱并具有异常性质。然而,它们也正在应用于时间分辨的晶体学,例如,对化学品,飞秒秒为的异构化和快速的三级结构变化。

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