论文标题

狭窄的带宽,来自激光效率加速器的低空阳性正电子梁

Narrow bandwidth, low-emittance positron beams from a laser-wakefield accelerator

论文作者

Streeter, M. J. V., Colgan, C., Cavanagh, N., Los, E., Antoine, A. F., Audet, T., Balcazar, M. D., Calvin, L., Carderelli, J., Ahmed, H., Kettle, B., Ma, Y., Mangles, S. P. D., Najmudin, Z., Rajeev, P. P., Symes, D. R., Thomas, A. G. R., Sarri, G.

论文摘要

等离子韦克菲尔德加速器正在经历的快速进步现在提出了一个问题,即是否可以将它们包括在下一代高能电子峰值乘员的设计中。但是,加速韦克菲尔德的典型结构为正电子加速带来了挑战性的并发症。到目前为止,由于缺乏适合种子等离子体加速器的正电子束,因此基于血浆的正电子加速度的研究经历了有限的实验进步。在这里,我们报告了第一次实验证明,以激光驱动的超相关正值来源具有足够的光谱和空间质量,可以注入等离子体加速器中。我们的结果表明,与数值模拟,选择和运输含有$ n_ {e+} \ geq10^5 $正电子的正电子梁在5 \%带宽约为600 meV的左右,具有空位级尺度的耐用性和微小尺度级别的归一化。细胞中的粒子模拟表明,这种正电子光束可以在激光驱动的等离子体加速器中有效地引导和加速,具有良好的尺度,可以使用PW尺度激光器进一步增加总体电荷和能量。此处介绍的结果表明,在血浆Wakefield中进行正电子加速度的实验研究的可能性。

The rapid progress that plasma wakefield accelerators are experiencing is now posing the question as to whether they could be included in the design of the next generation of high-energy electron-positron colliders. However, the typical structure of the accelerating wakefields presents challenging complications for positron acceleration. Research in plasma-based acceleration of positrons has thus far experienced limited experimental progress due to the lack of positron beams suitable to seed a plasma accelerator. Here, we report on the first experimental demonstration of a laser-driven source of ultra-relativistic positrons with sufficient spectral and spatial quality to be injected in a plasma accelerator. Our results indicate, in agreement with numerical simulations, selection and transport of positron beamlets containing $N_{e+}\geq10^5$ positrons in a 5\% bandwidth around 600 MeV, with femtosecond-scale duration and micron-scale normalised emittance. Particle-in-cell simulations show that positron beams of this kind can be efficiently guided and accelerated in a laser-driven plasma accelerator, with favourable scalings to further increase overall charge and energy using PW-scale lasers. The results presented here demonstrate the possibility of performing experimental studies of positron acceleration in a plasma wakefield.

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