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Focusing femtosecond X-ray free-electron laser pulses by refractive lenses

机译:通过折射透镜聚焦飞秒X射线自由电子激光脉冲

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摘要

The possibility of using a parabolic refractive lens with initial X-ray free-electron laser (XFEL) pulses, i.e. without a monochromator, is analysed. It is assumed that the measurement time is longer than 0.3 fs, which is the time duration of a coherent pulse (spike). In this case one has to calculate the propagation of a monochromatic wave and then perform an integration of the intensity over the radiation spectrum. Here a general algorithm for calculating the propagation of time-dependent radiation in free space and through various objects is presented. Analytical formulae are derived describing the properties of the monochromatic beam focused by a system of one and two lenses. Computer simulations show that the European XFEL pulses can be focused with maximal efficiency, i.e. as for a monochromatic wave. This occurs even for nanofocusing lenses.
机译:分析了使用带有初始X射线自由电子激光(XFEL)脉冲(即没有单色仪)的抛物面折射透镜的可能性。假设测量时间大于0.3 fs,这是相干脉冲(尖峰)的持续时间。在这种情况下,必须计算单色波的传播,然后对辐射光谱进行强度积分。这里介绍了一种用于计算随时间变化的辐射在自由空间中以及通过各种物体传播的通用算法。推导了描述由一个和两个透镜的系统聚焦的单色光束的特性的分析公式。计算机仿真表明,欧洲的XFEL脉冲可以最大的效率聚焦,例如单色波。即使对于纳米聚焦透镜也会发生这种情况。

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