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New halo formation mechanism at the KEK compact energy recovery linac

机译:KEK紧凑型能量回收直线加速器上的新光晕形成机理

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The beam halo mitigation is a very important challenge for reliable and safe operation of a high-energy machine. A systematic beam halo study was conducted at the KEK compact energy recovery linac (cERL) since non-negligible beam loss was observed in the recirculation loop during a common operation. We found that the beam loss can be avoided by making use of the collimation system. Beam halo measurements have demonstrated the presence of vertical beam halos at multiple locations in the beam line (except the region near the electron gun). Based on these observations, we made a conjecture that the transverse beam halo is attributed to the longitudinal bunch tail arising at the photocathode. The transfer of particles from the longitudinal space to a transverse halo may have been observed and studied in other machines, considering nonlinear effects as their causes. However, our study demonstrates a new unique halo formation mechanism, in which a transverse beam halo can be generated by a longitudinal bunch tail due to transverse rf kicks from the accelerating (monopole) fields of the radio-frequency cavities. This halo formation occurs when nonrelativistic particles enter the cavities with a transverse offset, even if neither nonlinear optics nor nonlinear beam effects are present. A careful realignment of the injector system will mitigate the present halo. Another possible cure is to reduce the bunch tails by changing the photocathode material from the present GaAs to a multi-alkali that is known to have a shorter longitudinal tail.
机译:束晕减少对于高能量机器的可靠和安全操作是非常重要的挑战。在KEK紧凑型能量回收直线加速器(cERL)上进行了系统的光束光晕研究,因为在常规操作期间在再循环回路中观察到了不可忽略的光束损失。我们发现通过使用准直系统可以避免光束损失。束晕测量表明束线中多个位置(电子枪附近的区域除外)都存在垂直束晕。基于这些观察,我们推测横束光晕归因于在光电阴极处出现的纵向束尾。可能已经在其他机器中观察到并研究了粒子从纵向空间到横向光晕的转移,并将非线性效应视为其原因。但是,我们的研究表明了一种新的独特的光晕形成机制,其中,由于射频空腔的加速(单极)场产生的横向rf突跳,纵向束尾可产生横束光晕。当非相对论粒子以横向偏移进入腔体时,即使不存在非线性光学或非线性光束效应,也会发生这种光晕形成。仔细调整喷油器系统会减轻当前的光晕。另一种可能的解决方法是通过将光电阴极材料从当前的GaAs更改为已知具有较短纵向尾部的多碱来减少束尾。

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