电子和光子脉冲光束的SPARC_LAB飞秒同步

M. Bellaveglia, A. Gallo, L. Piersanti, R. Pompili, G. Gatti, M. Anania, M. Petrarca, F. Villa, E. Chiadroni, A. Biagioni, A. Mostacci
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引用次数: 2

摘要

SPARC实验室拥有一个150 MeV的电子光注入器,配备了一个用于FEL生产的波动器(SPARC)和一个高功率TW激光器(FLAME)。近年来,同步系统在激光、电子束和射频加速场之间的相对抖动达到了< 100 fsRMS的性能。这符合下一个未来实验的要求:(i)通过汤姆森散射产生x射线(2014年实现的第一次碰撞)和(ii)通过多电子束进行粒子驱动的PWFA实验。我们报告了在机器运行期间使用BAMs(束到达监视器)和EOS(光电采样)系统所进行的测量。目前正在设计一种利用火焰激光脉冲产生的等离子体外部注入电子束的LWFA的新研发活动。同步系统的升级正在进行中,以保证< 30 fs RMS抖动所需的规格。它预测了从电学结构到光学结构的转变,这主要影响参考信号的分布和到达时间检测性能。提出了新的系统结构,并给出了相关的实验数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The SPARC_LAB femtosecond synchronization for electron and photon pulsed beams
The SPARC LAB complex hosts a 150 MeV electron photo-injector equipped with an undulator for FEL production (SPARC) together with a high power TW laser (FLAME). Recently the synchronization system reached the performance of < 100 fsRMS relative jitter between lasers, electron beam and RF accelerating fields. This matches the requirements for next future experiments: (i) the production of X-rays by means of Thomson scattering (first collisions achieved in 2014) and (ii) the particle driven PWFA experiment by means of multiple electron bunches. We report about the measurements taken during the machine operation using BAMs (Bunch Arrival Monitors) and EOS (Electro-Optical Sampling) system. A new R and D activity concerning the LWFA using the external injection of electron bunches in a plasma generated by the FLAME laser pulse is under design. The upgrade of the synchronization system is under way to guarantee the < 30 fs RMS jitter required specification. It foresees the transition from electrical to optical architecture that mainly affects the reference signal distribution and the time of arrival detection performances. The new system architecture is presented together with the related experimental data.
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