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Preliminary measurements for a sub-femtosecond electron bunch length diagnostic

机译:亚飞秒电子束长度诊断的初步测量

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摘要

With electron beam durations down to femtoseconds and sub-femtoseconds achievable in current state-of-the-art accelerators, longitudinal bunch length diagnostics with resolution at the attosecond level are required. In this paper, we present such a novel measurement device which combines a high-power laser modulator with an RF deflecting cavity in the orthogonal direction. While the laser applies a strong correlated angular modulation to a beam, the RF deflector ensures the full resolution of this streaking effect across the bunch hence recovering the temporal beam profile with sub-femtosecond resolution. Preliminary measurements to test the key components of this concept were carried out at the Accelerator Test Facility (ATF) at Brookhaven National Laboratory recently, the results of which are presented and discussed here. Moreover, a possible application of the technique for novel accelerator schemes is examined based on simulations with the particle-tracking code elegant and our beam profile reconstruction tool.
机译:在当前最先进的加速器中,电子束持续时间可达到飞秒和亚飞秒,因此需要纵向束长度诊断,分辨率必须在阿秒级别。在本文中,我们提出了这样一种新颖的测量设备,该设备将高功率激光调制器与正交方向上的RF偏转腔相结合。当激光束对光束施加强相关的角度调制时,RF偏转器可确保整个条纹上的条纹效果的完整分辨率,从而以亚飞秒分辨率恢复时间光束轮廓。最近,在布鲁克海文国家实验室的加速器测试设施(ATF)进行了用于测试此概念关键组件的初步测量,此处介绍和讨论其结果。此外,基于具有粒子跟踪代码elegant的仿真和我们的光束轮廓重建工具,对该技术在新型加速器方案中的可能应用进行了检验。

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