射频光发射源的优化电子束电流分布

T. Xu, C. Jing, A. Kanareykin, P. Piot, J. Power
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引用次数: 3

摘要

在光束驱动加速中,具有倾斜电流分布的驱动束支持增强的变压器比,从而实现更长的相互作用长度,从而增加与见证束相关的能量增益。这种定制电子束的生产可以通过不同的光束整形方法来完成。由于其简单性,一种特别有趣的技术是在光发射源中形成激光脉冲的时间分布。在这篇文章中,我们通过形状优化技术,研究了使用这种激光整形技术产生的斜坡束分布。我们的研究以阿贡韦克菲尔德加速器为例,该加速器正在计划进行原理验证实验。我们还讨论了与激光整形相关的限制和可能的改进。
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Optimized Electron Bunch Current Distribution from a Radiofrequency Photo-Emission Source
In beam-driven acceleration, drive bunches with ramped current profiles support enhanced transformer ratios which enable longer interaction lengths thereby increasing the energy gain associated with the witness bunch. The production of such tailored electron bunches can be accomplished via different beam shaping methods. One technique of particular interest, owing to its simplicity, consists in shaping the temporal profile of the laser pulse in photoemission sources. In this contribution we investigate, via a shape-optimization technique, the generation of a ramped bunch distribution using such a laser-shaping technique. Our study takes the example of the Argonne Wakefield Accelerator where a proof-of-principle experiment is being planned. We also discuss limitations associated with the laser shaping and possible improvements.
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