论文标题

在空心通道等离子体中使用稳定的不对称模式的正电子光束加速的高效均匀的韦克场加速度

High efficiency uniform wakefield acceleration of a positron beam using stable asymmetric mode in a hollow channel plasma

论文作者

Zhou, Shiyu, Hua, Jianfei, Lu, Wei, An, Weiming, Mori, Warren B., Joshi, Chan

论文摘要

井喷状态下的血浆韦克赛场加速度对于电子束的高能加速特别有希望,因为它具有同时提供较大的加速度梯度和高能量传递效率的同时,同时保持出色的光束质量。但是,迄今为止,没有发现等离子体唤醒的正电子加速度的等效制度。我们表明,在短短的传播距离之后,不对称的电子束在空心等离子体通道中驱动一个稳定的韦克菲尔德,既可以加速又聚焦于正电子束。高电荷正电子束放置在驱动板后面的合适距离上可以横梁负载或扁平纵向韦克场并增强横向聚焦力,从而导致高效和狭窄的能量扩散。三维准静态粒子中的粒子(PIC)模拟表明,可以同时获得超过30%的能量提取效率,并且可以同时获得1%的能量扩散,并且可以进行进一步的优化。

Plasma wakefield acceleration in the blowout regime is particularly promising for high-energy acceleration of electron beams because of its potential to simultaneously provide large acceleration gradients and high energy transfer efficiency while maintaining excellent beam quality. However, no equivalent regime for positron acceleration in plasma wakes has been discovered to-date. We show that after a short propagation distance, an asymmetric electron beam drives a stable wakefield in a hollow plasma channel that can be both accelerating and focusing for a positron beam. A high charge positron bunch placed at a suitable distance behind the drive bunch can beam-load or flatten the longitudinal wakefield and enhance the transverse focusing force, leading to high-efficiency and narrow energy spread acceleration of the positrons. Three-dimensional quasi-static particle-in-cell (PIC) simulations show that over 30% energy extraction efficiency from the wake to the positrons and 1% level energy spread can be simultaneously obtained, and further optimization is feasible.

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