The Particle-Tracking Simulation of a New Photocathode RF Gun in the Free-Electron Laser Facility, KU-FEL

Yuhao Zhao, H. Zen, H. Ohgaki
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Abstract

A project is underway that aims to generate attosecond pulses via high-harmonic generation in rare gases, driven by extremely short and highly intense pulses from free-electron-laser oscillators. For this purpose, it has been planned that a new photocathode RF gun, dedicated to high-bunch-charge operation, will be installed at the KU-FEL (Kyoto University Free Electron Laser) oscillator facility. In this study, RF guns with two different structures (1.6-cell and 1.4-cell) were compared, from the perspective of exploring the possibility of introducing bunch-interval modulation, which is important for achieving high extraction efficiency in the FEL oscillator. As a result, it was confirmed that the introduction of bunch-phase modulation would be possible only in the case of the 1.6-cell RF gun. After the structure of the RF gun was decided on, particle-tracking simulations were performed, to study the electron-beam parameters using the 1.6-cell RF gun and 1 nC bunch charge. The results showed that we could obtain the peak current of 1 kA without a large degradation of the other parameters.
自由电子激光装置中新型光电阴极射频枪的粒子跟踪模拟
一个正在进行的项目旨在通过稀有气体中的高谐波产生产生阿秒脉冲,由来自自由电子激光振荡器的极短且高强度脉冲驱动。为此,计划在KU-FEL(京都大学自由电子激光)振荡器设施中安装一个专门用于高束电荷操作的新型光电阴极射频枪。本研究比较了两种不同结构(1.6胞和1.4胞)的射频炮,从探索引入束间隔调制的可能性的角度出发,这对于在FEL振荡器中实现高提取效率至关重要。结果证实,只有在1.6单元射频炮的情况下才有可能引入束相调制。在确定了射频枪的结构后,进行了粒子跟踪模拟,研究了使用1.6 cell射频枪和1nc束荷时的电子束参数。结果表明,我们可以获得1 kA的峰值电流,而不会对其他参数造成很大的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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