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Analysis the influence of pulse‑to‑pulse stability of modulator on high‑power microwave output of pulsed klystron

机译:分析调制器脉冲对脉冲稳定性对脉冲Klystron大功率微波输出的影响

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摘要

X-ray free electron laser (XFEL) facility based on electron linear accelerator (LINAC) is regarded as one kind of the fourth-generation light source with the characteristics of high intensity, exceptional brightness, ultrashort pulse duration, and spatial coherence. In electron linear accelerator, energy of beam bunches is provided by high-power electromagnetic microwaves which are generated by a microwave tube called klystron. The stability of beam voltage of klystron occupies a key position in both the stability of output RF (Radio Frequency) power and the jitter of output RF phase, furthermore, it plays an extremely important role in beam energy stability of electron linear accelerator. In this paper, high power RF fluctuation and phase jitter of klystron output caused by beam voltage instability of klystron are analyzed and calculated. Influence of klystron beam voltage instability on beam energy gain in linear accelerator have also been further analyzed and calculated. The calculating procedure is particularly valuable for us to understand the relationship between pulse modulator stability and beam energy gain fluctuations. Finally, relevant experimental results measured by Shanghai Soft X-ray Free Electron Laser Test Facility (SXFEL-TF) is presented.
机译:基于电子线性加速器(LINAC)的X射线自由电子激光器(XFEL)设施被认为是一种第四代光源,具有高强度,卓越亮度,超短脉冲持续时间和空间相干性的特点。在电子线性加速器中,光束束的能量由高功率电磁微波提供,该微波通过称为Klystron的微波管产生。 Klystron光束电压的稳定性占据了输出RF(射频)功率的稳定性和输出RF相位的稳定性的关键位置,此外,它在电子线性加速器的光束能稳定性中起着极其重要的作用。在本文中,分析并计算了克利克朗梁电压不稳定性引起的Klystron输出的高功率RF波动和相位抖动。还进一步分析并计算了Klystron梁电压不稳定性对线性加速器中光束能量增益的影响。计算过程对我们来说是理解脉冲调制器稳定性和光束能量增益波动之间的关系。最后,提出了上海软X射线自由电子激光测试设施(SXFEL-TF)测量的相关实验结果。

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