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Generation of Ramped Current Profiles in Relativistic Electron Beams Using Wakefields in Dielectric Structures

机译:利用介电结构中的唤醒场在相对论电子束中产生倾斜的电流分布

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Temporal pulse tailoring of charged-particle beams is essential to optimize efficiency in collinear wakefield acceleration schemes. In this Letter, we demonstrate a novel phase space manipulation method that employs a beam wakefield interaction in a dielectric structure, followed by bunch compression in a permanent magnet chicane, to longitudinally tailor the pulse shape of an electron beam. This compact, passive, approach was used to generate a nearly linearly ramped current profile in a relativistic electron beam experiment carried out at the Brookhaven National Laboratory Accelerator Test Facility. Here, we report on these experimental results including beam and wakefield diagnostics and pulse profile reconstruction techniques.
机译:带电粒子束的时间脉冲调整对于优化共线尾波加速方案中的效率至关重要。在这封信中,我们演示了一种新颖的相空间操纵方法,该方法在电介质结构中采用束流场相互作用,然后在永磁体磁锥中进行束压缩,以纵向调整电子束的脉冲形状。在布鲁克海文国家实验室加速器测试设施进行的相对论电子束实验中,这种紧凑的无源方法被用来生成近乎线性的电流梯度。在这里,我们报告这些实验结果,包括光束和尾场诊断以及脉冲轮廓重建技术。

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