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Simulation study of an LWFA-based electron injector for AWAKE Run 2

机译:基于LWFA的AWAKE Run 2电子注入器的仿真研究

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摘要

The AWAKE experiment aims to demonstrate preservation of injected electron beam quality during acceleration in proton-driven plasma waves. The short bunch duration required to correctly load the wakefield is challenging to meet with the current electron injector system, given the space available to the beamline. An LWFA readily provides short-duration electron beams with sufficient charge from a compact design, and provides a scalable option for future electron acceleration experiments at AWAKE. Simulations of a shock-front injected LWFA demonstrate a 43 TW laser system would be sufficient to produce the required charge over a range of energies beyond 100 MeV. LWFA beams typically have high peak current and large divergence on exiting their native plasmas, and optimisation of bunch parameters before injection into the proton-driven wakefields is required. Compact beam transport solutions are discussed.
机译:AWAKE实验旨在证明在质子驱动等离子体波加速过程中保持注入的电子束质量。在给定束线可用空间的情况下,正确加载尾波场所需的短束持续时间对于当前的电子注入器系统来说具有挑战性。 LWFA可以通过紧凑的设计轻松地为短时电子束提供足够的电荷,并为将来在AWAKE进行电子加速实验提供了可扩展的选择。激波前注入LWFA的仿真表明,一个43 TW激光系统足以在超过100 MeV的能量范围内产生所需的电荷。 LWFA光束通常在离开其天然等离子体时具有较高的峰值电流和较大的发散度,因此需要在注入质子驱动的尾波场之前优化束参数。讨论了紧凑型束传输解决方案。

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