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Corrugated structure insertion for extending the SASE bandwidth up to 3% at the European XFEL

机译:波纹结构插入,可在欧洲XFEL上将SASE带宽扩展至3%

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The usage of x-ray free electron laser (XFEL) in femtosecond nanocrystallography involves sequential illumination of many small crystals of arbitrary orientation. Hence a wide radiation bandwidth will be useful in order to obtain and to index a larger number of Bragg peaks used for determination of the crystal orientation. Considering the baseline configuration of the European XFEL in Hamburg, and based on beam dynamics simulations, we demonstrate here that the usage of corrugated structures allows for a considerable increase in radiation bandwidth. Data collection with a 3% bandwidth, a few microjoule radiation pulse energy, a few femtosecond pulse duration, and a photon energy of 5.4 keV is possible. For this study we have developed an analytical modal representation of the short-range wake function of the flat corrugated structures for arbitrary offsets of the source and the witness particles.
机译:飞秒纳米晶体学中使用X射线自由电子激光(XFEL)涉及对任意方向的许多小晶体的顺序照明。因此,宽的辐射带宽对于获得并标出用于确定晶体取向的大量布拉格峰将是有用的。考虑到汉堡欧洲XFEL的基准配置,并基于光束动力学模拟,我们在此证明,使用波纹结构可以显着增加辐射带宽。可以以3%的带宽,几微焦耳的辐射脉冲能量,几飞秒的脉冲持续时间以及5.4 keV的光子能量进行数据收集。对于本研究,我们针对源和证人颗粒的任意偏移量开发了扁平波纹结构的短程尾流函数的解析模态表示。

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