Design and Beam Dynamic Studies of an Injector for a Compact THz Coherent Radiation Source

S. Jummunt, Wanisa Promdee, T. Chanwattana, Nawin Junthong, S. Chunjarean, S. Klinkhieo
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Abstract

An intense narrow-band terahertz (THz) radiation source has been designed to generate a broad tuning range of radiation frequencies between 0.5 THz and 5.0 THz. The THz radiation is produced when a short-bunch electron beam propagates through an undulator. To achieve high-power peak radiation, the source requires high-brightness electron beams with low beam emittance and short bunch length. A proposed design for the photocathode RF gun used as the electron source is presented. The gun with high mode separation and high Q-factor can be achieved for producing a good beam quality. The beam dynamics of the injector have been preliminarily optimized using the software ASTRA and Elegant, investigating the impact of laser pulse shape on electron beam quality. The results of the beam dynamics studies are comprehensively discussed in this paper.
紧凑太赫兹相干辐射源注入器的设计与光束动力学研究
设计了一种强窄带太赫兹(THz)辐射源,可产生0.5太赫兹至5.0太赫兹之间的宽调谐辐射频率范围。太赫兹辐射是当短束电子束通过波动器传播时产生的。为了实现大功率峰值辐射,光源需要高亮度、低发射度、短束长的电子束。提出了一种用作电子源的光电阴极射频枪的设计方案。采用高模分离和高q因子的激光枪可以获得良好的光束质量。利用ASTRA和Elegant软件对注入器的光束动力学进行了初步优化,研究了激光脉冲形状对电子束质量的影响。本文对梁动力学的研究结果进行了全面的讨论。
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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