首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Cavity tilt measurement using beam excited higher order mode signals at the Free Electron Laser FLASH
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Cavity tilt measurement using beam excited higher order mode signals at the Free Electron Laser FLASH

机译:腔倾斜测量使用光束激发高阶模式信号在自由电子激光器闪光灯处

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摘要

At the Free Electron Laser in Hamburg (FLASH), TESLA-type superconducting (SC) cavities are used for the acceleration of electron bunches. Higher Order Modes (HOMs) excited by electron bunches may cause emittance growth and decrease the FEL performance. The misalignment of the SC cavities housed inside cryo-modules is one of the main factors which enhance the coupling of HOMs to the bunches. We consider the cavity offset and tilt as the two most relevant misalignments. These can be measured by utilizing the beam excited HOM signals. The cavity offset has been measured before in several modules at FLASH, while the tilt has so far proved to be much more difficult to be measured. This is because the beam trajectory tilt excited modes are much weaker than the ones excited by offset. We used a method for measuring cavity tilt by carefully targeting the beam through the middle of a cavity. An efficient data processing routine based on signal fitting was applied. For the first time, the tilts of all cavities inside a cryo-module are measured. The ratio between the offset and angle dependence of the HOMs agrees well among the different cavities.
机译:在汉堡(闪光灯)的自由电子激光器上,特斯拉型超导(SC)空腔用于电子束的加速度。电子束兴奋的高阶模式(HOMS)可能导致粘合性增长并降低氢化性能。在Cryo-Modues内容纳的SC空腔的未对准是增强HOMS与束的耦合的主要因素之一。我们认为腔偏移并倾斜,作为两个最相关的错位。这些可以通过利用光束激发HOM信号来测量。在闪光灯中的几个模块之前已经测量了腔偏移,而倾斜则证明是更难以测量的。这是因为光束轨迹倾斜的兴奋模式比偏移激发的射线较弱。我们使用了一种通过小心地瞄准横腔来测量腔倾斜的方法。应用了基于信号拟合的有效数据处理例程。首次,测量所有光盘模块内的所有空腔的倾斜。 HOMS的偏移和角度依赖性之间的比率在不同的腔中吻合良好。

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