论文标题
来自上演激光和等离子体Wakefield加速器的稳定和高质量电子梁
Stable and high quality electron beams from staged laser and plasma wakefield accelerators
论文作者
论文摘要
我们在由激光Wakefield加速器(LWFA)驱动的血浆Wakefield加速器(PWFA)上提出了实验结果。在这种分阶段的设置中,在PWFA中的光学产生的流体动力冲击下,产生了电子束。该排列在PWFA阶段产生的梁的能量稳定性与单阶段激光加速器和由常规加速器驱动的等离子体Wakefield加速器相当。模拟支持,可以利用pwfas对驾驶员能量波动的内在无敏感性,以克服最新的激光韦克菲尔德加速器在添加PWFA阶段时的稳定性限制。此外,我们证明了电子束的产生,其能量扩散和发散优于单阶段LW-FAS,从而导致具有密集相位空间的束,并且超出了初始驱动器梁参数以外的角度光谱电荷密度。这些结果明确地表明,上演的LWFA-PWFA可以帮助定制某些应用的电子光束质量,并减少波动激光驱动器对电子束稳定性的影响。这鼓励了这一新的韦克菲尔德加速度的进一步发展,这是一种可行的紧凑,高质量电子束源的可行计划。
We present experimental results on a plasma wakefield accelerator (PWFA) driven by high-current electron beams from a laser wakefield accelerator (LWFA). In this staged setup stable and high quality (low divergence and low energy spread) electron beams are generated at an optically-generated hydrodynamic shock in the PWFA. The energy stability of the beams produced by that arrangement in the PWFA stage is comparable to both single-stage laser accelerators and plasma wakefield accelerators driven by conventional accelerators. Simulations support that the intrinsic insensitivity of PWFAs to driver energy fluctuations can be exploited to overcome stability limitations of state-of-the-art laser wakefield accelerators when adding a PWFA stage. Furthermore, we demonstrate the generation of electron bunches with energy spread and divergence superior to single-stage LW-FAs, resulting in bunches with dense phase space and an angular-spectral charge density beyond the initial drive beam parameters. These results unambiguously show that staged LWFA-PWFA can help to tailor the electron-beam quality for certain applications and to reduce the influence of fluctuating laser drivers on the electron-beam stability. This encourages further development of this new class of staged wakefield acceleration as a viable scheme towards compact, high-quality electron beam sources.