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Grating monochromator with ultrafast response for FLASH2 at DESY

机译:光栅单色仪对DESY的FLASH2具有超快速响应

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We discuss the design of grating-based monochromators for coherent ultrafast pulses in the extreme-ultraviolet. The main application of such instruments is the monochromatization of ultrafast high-order laser harmonics and free-electron-laser pulses. We present the conditions to be fulfilled by a grating monochromator that doesn't increase the pulse duration significantly longer than the Fourier limit. A full correction of the pulse-front tilt requires the use of two gratings in a time-delay compensating configuration. The grating-monochromator configuration is applied to the design of the monochromatic beamline for FLASH2 at DESY. The monochromator has to be tunable in the 50-1000 eV energy range with a resolving power higher than 1000 and an instrumental response shorter than 100 fs in the whole energy range. Given the actual parameters of the FLASH2 radiation and the restrictions in the positioning of the optical elements, the tilt of the pulse-front given by a single grating would give an unacceptable temporal stretching of the pulse. This has to be corrected by a second grating in the compensated configuration. The residual distortion of the pulse-front after the second grating is well below 10 fs.
机译:我们讨论了用于极端紫外中相干超快脉冲的基于光栅的单色器的设计。这种仪器的主要应用是超快高阶激光谐波和自由电子激光脉冲的单色化。我们提出了光栅单色仪要满足的条件,该单色仪不会增加脉冲持续时间明显长于傅立叶极限。脉冲前倾斜的完全校正需要在延时补偿配置中使用两个光栅。光栅单色仪配置应用于DESY的FLASH2单色光束线的设计。单色仪必须在50-1000 eV的能量范围内可调,在整个能量范围内的分辨力必须高于1000,仪器响应应低于100 fs。给定FLASH2辐射的实际参数和光学元件的位置限制,由单个光栅给出的脉冲前倾会给脉冲带来不可接受的时间扩展。这必须由补偿配置中的第二个光栅来校正。在第二个光栅之后,脉冲前的残余失真远低于10 fs。

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