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Commissioning of the electron injector for the AWAKE experiment

机译:调试AWAKE实验用电子注射器

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The advanced wakefield experiment (AWAKE) at CERN is the first proton beam-driven plasma wakefield acceleration experiment. The main goal of AWAKE RUN 1 was to demonstrate seeded self-modulation (SSM) of the proton beam and electron witness beam acceleration in the plasma wakefield. For the AWAKE experiment, a 10-meter-long Rubidium-vapor cell together with a high-power laser for ionization was used to generate the plasma. The plasma wakefield is driven by a 400 GeV/c proton beam extracted from the super proton synchrotron (SPS), which undergoes a seeded self-modulation process in the plasma. The electron witness beam used to probe the wakefields is generated from an S-band RF photo-cathode gun and then accelerated by a booster structure up to energies between 16 and 20 MeV. The first run of the AWAKE experiment revealed that the maximum energy gain after the plasma cell is 2 GeV, and the SSM mechanism of the proton beam was verified. In this paper, we will present the details of the AWAKE electron injector. A comparison of the measured electron beam parameters, such as beam size, energy, and normalized emittance, with the simulation results was performed.
机译:CERN的先进尾波场实验(AWAKE)是第一个质子束驱动的等离子体尾波场加速实验。 AWAKE RUN 1的主要目标是证明质子束的种子自调制(SSM)和等离子流场中电子见证束的加速度。对于AWAKE实验,使用了一个10米长的Rub蒸气池和一个高功率激光进行电离,以产生等离子体。等离子体尾波由从超质子同步加速器(SPS)提取的400 GeV / c质子束驱动,该质子束在等离子体中经历了播种的自调制过程。用于探测尾波场的电子见证束是由S波段RF光电枪产生的,然后由增强器结构加速,直至能量达到16到20 MeV。 AWAKE实验的第一轮运行表明,浆胞之后的最大能量增益为2 GeV,并验证了质子束的SSM机制。在本文中,我们将介绍AWAKE电子注射器的详细信息。将测得的电子束参数(例如束大小,能量和归一化发射率)与仿真结果进行了比较。

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