Zhang Liang, Donaldson Craig R, Clarke Jim, Easton Jack, Robertson Craig W, Whyte Colin G, Cross Adrian W
Department of Physics, University of Strathclyde, Glasgow, G4 0NG, UK.
The Cockcroft Institute, Sci-Tech Daresbury, Keckwick Lane, Warrington, WA4 4AD, UK.
Sci Rep. 2022 Apr 29;12(1):7071. doi: 10.1038/s41598-022-11101-2.
Microwave undulators (MUs) have great potential to be an alternative solution to permanent magnet undulators in a free electron laser (FEL) when shorter undulator periods are required. In this paper, the factors that affect the choice of the high-power drive sources were studied via a Ka-band cavity-type MU with a corrugated waveguide proposed for the CompactLight X-ray FEL. They include the technology of the high-power vacuum electronic devices, the quality factor of the MU cavity that was demonstrated by prototyping a short section of the MU structure, and the beam dynamic study of the electrons' trajectories inside the MU. It showed that at high beam energy, a high-power oscillator is feasible to be used as the drive source. At low beam energy, the maximum transverse drift distance becomes larger therefore an amplifier has to be used to minimize the drift distance of the electrons by controlling the injection phase.
当需要更短的波荡器周期时,微波波荡器(MU)在自由电子激光(FEL)中作为永磁波荡器的替代解决方案具有巨大潜力。本文通过为紧凑型轻量级X射线自由电子激光提出的带有波纹波导的Ka波段腔式微波波荡器,研究了影响高功率驱动源选择的因素。这些因素包括高功率真空电子器件技术、通过制作微波波荡器结构的短节原型展示的微波波荡器腔的品质因数,以及对微波波荡器内电子轨迹的束流动力学研究。结果表明,在高束流能量下,高功率振荡器用作驱动源是可行的。在低束流能量下,最大横向漂移距离变大,因此必须使用放大器通过控制注入相位来最小化电子的漂移距离。