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首页> 外文期刊>Physical Review. Accelerators and Beams >Beam-based measurements of long-range transverse wakefields in the Compact Linear Collider main-linac accelerating structure
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Beam-based measurements of long-range transverse wakefields in the Compact Linear Collider main-linac accelerating structure

机译:紧凑型线性对撞机主直线加速器加速结构中基于波束的远程横向尾流场测量

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摘要

The baseline design of CLIC (Compact Linear Collider) uses X-band accelerating structures for its main linacs. In order to maintain beam stability in multibunch operation, long-range transverse wakefields must be suppressed by 2 orders of magnitude between successive bunches, which are separated in time by 0.5 ns. Such strong wakefield suppression is achieved by equipping every accelerating structure cell with four damping waveguides terminated with individual rf loads. A beam-based experiment to directly measure the effectiveness of this long-range transverse wakefield and benchmark simulations was made in the FACET test facility at SLAC using a prototype CLIC accelerating structure. The experiment showed good agreement with the simulations and a strong suppression of the wakefields with an unprecedented minimum resolution of $0.1ext{ }ext{ }mathrm{V}/(mathrm{pC}ext{ }mathrm{mm}ext{ }mathrm{m})$.
机译:CLIC(紧凑型线性对撞机)的基线设计为其主要直线加速器使用X波段加速结构。为了在多束操作中保持光束稳定性,连续束之间的长距离横向尾波场必须抑制2个数量级,这些束在时间上相隔0.5 ns。通过为每个加速结构单元配备四个以单独的rf负载终止的阻尼波导,可以实现这种强大的尾场抑制功能。使用原型CLIC加速结构,在SLAC的FACET测试设施中进行了基于波束的实验,以直接测量该远程横向尾流场和基准模拟的有效性。实验表明,与仿真具有很好的一致性,并且以最低的$ 0.1 text {} text {} mathrm {V} /( mathrm {pC} text {} mathrm {mm } text {} mathrm {m})$。

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