Department of Engineering Physics, Tsinghua University, Beijing 100084, China.
University of California, Los Angeles, California 90095, USA.
Phys Rev Lett. 2016 Mar 25;116(12):124801. doi: 10.1103/PhysRevLett.116.124801. Epub 2016 Mar 21.
Phase space matching between two plasma-based accelerator (PBA) stages and between a PBA and a traditional accelerator component is a critical issue for emittance preservation. The drastic differences of the transverse focusing strengths as the beam propagates between stages and components may lead to a catastrophic emittance growth even when there is a small energy spread. We propose using the linear focusing forces from nonlinear wakes in longitudinally tailored plasma density profiles to control phase space matching between sections with negligible emittance growth. Several profiles are considered and theoretical analysis and particle-in-cell simulations show how these structures may work in four different scenarios. Good agreement between theory and simulation is obtained, and it is found that the adiabatic approximation misses important physics even for long profiles.
在两个基于等离子体的加速器 (PBA) 阶段之间以及在 PBA 和传统加速器组件之间进行相空间匹配是保持发射度的关键问题。即使存在小的能量扩散,当束流在阶段和组件之间传播时,横向聚焦强度的剧烈差异也可能导致发射度灾难性地增长。我们提出使用纵向调谐等离子体密度分布中的非线性尾流的线性聚焦力来控制具有可忽略发射度增长的部分之间的相空间匹配。考虑了几种分布,并通过理论分析和粒子模拟展示了这些结构在四种不同情况下如何工作。理论和模拟之间取得了良好的一致性,并且发现即使对于长分布,绝热近似也会忽略重要的物理现象。