论文标题
使用数值优化器的唤醒运行2C传输线的设计
Design of the AWAKE Run 2c transfer lines using numerical optimizers
论文作者
论文摘要
先进的韦克菲尔德(唤醒)实验是一项原则证明实验,该实验通过质子驱动的等离子体韦克菲尔德加速度证明了电子束的加速度。醒来的运行1达到了电子梁至2 GEV的加速度,并且运行2的意图是通过以更高的梁质量实现〜10 GEV来建立这些结果。作为运行2的升级的一部分,将添加现有的质子和电子束线,并添加第二个浆细胞和新的150 MEV电子束线。该新的光束线将需要从两个等离子体细胞之间的1 m间隙内注入微光束尺寸和稳定性的电子束中的第二个浆细胞。在本文中,我们描述了用于生成150 MEV电子系的设计的技术(例如数值优化者和遗传算法),以满足具有挑战性的实验规范。还研究了针对电子传输线的操作技术,包括使用神经网络的数值优化器和光束测量技术的转向和比对方法。
The Advanced Wakefield (AWAKE) Experiment is a proof-of-principle experiment demonstrating the acceleration of electron beams via proton-driven plasma wakefield acceleration. AWAKE Run 1 achieved acceleration of electron beams to 2 GeV and the intention for Run 2 is to build on these results by achieving acceleration to ~10 GeV with a higher beam quality. As part of the upgrade to Run 2, the existing proton and electron beamlines will be adapted and a second plasma cell and new 150 MeV electron beamline will be added. This new beamline will be required to inject electron bunches with micron-level beam size and stability into the second plasma cell from within the 1 m gap between the two plasma cells. In this paper we describe the techniques used (e.g. numerical optimizers and genetic algorithms) to produce the design of the 150 MeV electron line in order to meet the challenging experimental specifications. Operational techniques are also studied for both electron transfer lines including steering and alignment methods utilising numerical optimizers and beam measurement techniques employing neural networks.