论文标题
电子驱动的等离子体韦克菲尔德加速器中的全光密度向下注入
All-optical density downramp injection in electron-driven plasma wakefield accelerators
论文作者
论文摘要
将明确定义的高质量电子种群注入等离子体波是等离子体Wakefield加速器的关键挑战。在这里,我们报告了电子驱动的等离子体Wakefield加速器中等离子体密度向下注入的首次实验演示,该速度可以通过MJ级激光脉冲以全光速进行控制和调节。激光脉冲在到达之前将激光脉冲引导到血浆波的路径上,除了通过对高电离阈值气体分量的隧穿电离,它除了背景等离子体外,还会生成局部等离子体密度尖峰。该密度尖峰在密度倾斜过程中扭曲了血浆波,导致血浆电子被注入血浆波。通过调整激光脉冲能量和形状,可以设计高度柔韧的等离子体密度尖峰轮廓,从而实现深色电流无用的高质量电子束的多功能产生。反过来,这允许创建独特的注射梁构型,例如反振荡双梁。
Injection of well-defined, high-quality electron populations into plasma waves is a key challenge of plasma wakefield accelerators. Here, we report on the first experimental demonstration of plasma density downramp injection in an electron-driven plasma wakefield accelerator, which can be controlled and tuned in all-optical fashion by mJ-level laser pulses. The laser pulse is directed across the path of the plasma wave before its arrival, where it generates a local plasma density spike in addition to the background plasma by tunnelling ionization of a high ionization threshold gas component. This density spike distorts the plasma wave during the density downramp, causing plasma electrons to be injected into the plasma wave. By tuning the laser pulse energy and shape, highly flexible plasma density spike profiles can be designed, enabling dark current free, versatile production of high-quality electron beams. This in turn permits creation of unique injected beam configurations such as counter-oscillating twin beamlets.